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#has created a need for reliable and efficient relays in power generation and distribution systems. Self-powered relays are well-suited for
electronqatar · 3 months
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Empowering the Modern World: The Evolution of Power Supply Systems
In today's fast-paced and technology-driven world, reliable power supply qatar is the lifeblood of modern society, powering everything from homes and businesses to industries and infrastructure. The evolution of power supply systems has been a testament to human ingenuity and innovation, transforming the way we generate, distribute, and consume electricity. From humble beginnings to cutting-edge technologies, the journey of power supply has shaped the way we live, work, and interact with the world around us.
The history of power supply can be traced back to the late 19th century, with the invention of the electric generator by luminaries such as Michael Faraday and Nikola Tesla. These early generators laid the groundwork for the development of centralized power plants, where electricity could be generated on a large scale and distributed over long distances via transmission lines. The advent of alternating current (AC) power systems, championed by Tesla and others, revolutionized the way electricity was transmitted and transformed, enabling the widespread electrification of cities and regions around the world.
As demand for electricity grew, so too did the need for more efficient and reliable battery charger systems. The 20th century witnessed the rise of interconnected power grids, where multiple power plants could be linked together to form a unified network capable of delivering electricity to millions of consumers. These interconnected grids provided greater reliability and resilience against outages, as well as improved efficiency through the sharing of resources and the ability to balance supply and demand in real time.
In recent decades, advancements in technology have ushered in a new era of power supply systems characterized by decentralization, digitization, and sustainability. Distributed energy resources, such as solar panels, wind turbines, and energy storage systems, have emerged as viable alternatives to traditional centralized power plants, enabling consumers to generate their own electricity and reduce their reliance on the grid. Smart grid technologies, including advanced metering infrastructure (AMI) and grid automation, have transformed the way power is managed and distributed, allowing for greater efficiency, reliability, and flexibility in power supply operations.
Moreover, the growing imperative to address climate change and reduce carbon emissions has spurred a shift towards cleaner and more sustainable forms of power generation. Renewable energy sources, such as solar, wind, and hydroelectric power, have experienced rapid growth in recent years, driven by falling costs, favorable government policies, and increasing public awareness of environmental issues. These renewable energy sources offer a clean and abundant alternative to fossil fuels, helping to mitigate the impacts of climate change while also creating jobs and stimulating economic growth.
In addition to technological advancements, the future of auxiliary relays Qatar systems will be shaped by ongoing efforts to improve energy efficiency, promote electrification, and enhance grid resilience. Energy efficiency measures, such as energy-efficient appliances, LED lighting, and building insulation, can reduce electricity consumption and lower energy bills for consumers. Electrification initiatives, such as the transition to electric vehicles and heat pumps, offer opportunities to decarbonize transportation and heating sectors, further reducing greenhouse gas emissions. Grid resilience efforts, including grid modernization, cybersecurity, and disaster preparedness, are essential for ensuring the reliability and stability of power supply systems in the face of emerging threats and challenges.
In conclusion, the evolution of power supply systems has been driven by a combination of technological innovation, regulatory reform, and changing societal priorities. From the humble beginnings of electric generators to the emergence of renewable energy and smart grid technologies, the journey of ats change over has been marked by progress, resilience, and adaptability. As we look to the future, the challenge remains to build a more sustainable, resilient, and equitable energy system that meets the needs of present and future generations while safeguarding the health of the planet.
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lovelypol · 11 months
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Powering India's Future: Exploring the Switchgear Market for Low, Medium, and High Voltage
Hey, Tumblr community! ⚡ Today, we're delving into a fascinating world that keeps the wheels of progress turning—India's dynamic switchgear market for low, medium, and high voltage applications! Get ready to discover the crucial role played by these electrical superheroes in powering our nation's future. Let's dive in! 🔌💥
Switchgear, the unsung hero of the electrical infrastructure, is the backbone of power distribution and control systems. It ensures the safe and reliable operation of electrical networks by protecting equipment, isolating faults, and managing the flow of electricity. It's time to shine a spotlight on these essential components that keep our lights on and industries running. 💡🏭
The Indian switchgear market has experienced remarkable growth in recent years, driven by factors such as rapid urbanization, industrial development, and the government's focus on electrification initiatives. From residential buildings to commercial complexes and power generation plants, switchgear is an indispensable part of every electrical installation. It's all about keeping the current flowing smoothly and efficiently! 🏢🔋
Let's break it down: Low voltage (LV) switchgear typically operates at voltages up to 1,000 volts and is commonly found in homes, offices, and small-scale industries. It ensures the safe distribution of electricity to various electrical devices and protects against overloads and short circuits. It's the guardian angel of our everyday electrical systems! ⚡🔒
Moving up the voltage ladder, we have medium voltage (MV) switchgear, designed for applications ranging from 1,000 to 36,000 volts. This type of switchgear is commonly used in industrial complexes, power substations, and utility networks. With features like circuit breakers, disconnect switches, and protective relays, MV switchgear ensures reliable power supply and safeguards against electrical faults. It's the sturdy protector of industrial might! 🏭🔌
Last but not least, we have high voltage (HV) switchgear, which operates at voltages above 36,000 volts. HV switchgear is critical for the transmission and distribution of electricity over long distances, connecting power grids and ensuring the efficient delivery of electricity to consumers. With robust insulation, sophisticated control systems, and fault detection capabilities, HV switchgear is the gatekeeper of power on a grand scale! ⚡🌐
The switchgear market in India is witnessing rapid technological advancements as well. Innovations such as gas-insulated switchgear (GIS), intelligent electronic devices (IEDs), and digital monitoring systems are revolutionizing the industry. These advancements enhance reliability, increase operational efficiency, and enable remote monitoring and control of switchgear installations. It's the era of smart switchgear! 🌟🔧
As India progresses towards a future powered by renewable energy and smart grids, the demand for advanced switchgear solutions will only continue to grow. The industry is adapting to meet these evolving needs, focusing on eco-friendly designs, grid automation, and integration of renewable energy sources. It's an exciting time of transformation and innovation! ♻️🌞
So, whether you're an electrical engineer, an industry professional, or simply curious about the technology that powers our lives, India's switchgear market is an essential part of the electrifying journey towards a brighter future. Let's appreciate the invisible heroes that keep our electricity flowing smoothly and ensure a reliable power supply across the nation. 💪🔌
Stay powered up and keep dreaming big, Tumblr fam! ⚡🌟 #SwitchgearSolutions #PoweringTheFuture
(Note: This post is purely fictional and created for the purpose of demonstrating creative writing skills.)
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electronalytics · 1 year
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Self-Powered Relays Market Overview and Regional Outlook Study 2023 – 2032
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Details
Market Size by 2032
USD 31.98 Billion
Growth Rate from 2023 to 2032
CAGR of 5.78%
Largest Market
Asia Pacific
Base Year
2022
The market for self-powered relays has been growing steadily due to several factors. One of the key drivers is the increasing demand for energy-efficient solutions in various industries. Self-powered relays eliminate the need for external power sources, thereby reducing energy consumption and improving overall efficiency.
Furthermore, the growing emphasis on renewable energy sources, such as solar and wind power, has created a need for reliable and efficient relays in power generation and distribution systems. Self-powered relays are well-suited for these applications as they can operate in remote locations and do not rely on external power sources, making them ideal for use in renewable energy infrastructure.
The rise of smart grids and the increasing adoption of automation and control systems in various industries are also driving the demand for self-powered relays. These relays play a crucial role in protecting electrical systems, detecting faults, and ensuring safe and efficient operation.
Overall, the global self-powered relays market is experiencing growth driven by factors such as energy efficiency requirements, renewable energy integration, and the adoption of smart grid technologies.
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Market Segmentations:
Global Self-Powered Relays Market: By Company • ABB • Siemens • Fanox • Schneider Electric • Eaton • C&S Electric • JVS Electronics • Ashida Electronics • Relko Enerji • Kries-Energietechnik Global Self-Powered Relays Market: By Type • Static • Numerical • Auxiliary Global Self-Powered Relays Market: By Application • Power Generation • Utilities • Infrastructure • Industrial • Transportation • Others Global Self-Powered Relays Market: Regional Analysis All the regional segmentation has been studied based on recent and future trends, and the market is forecasted throughout the prediction period. The countries covered in the regional analysis of the Global Self-Powered Relays market report are U.S., Canada, and Mexico in North America, Germany, France, U.K., Russia, Italy, Spain, Turkey, Netherlands, Switzerland, Belgium, and Rest of Europe in Europe, Singapore, Malaysia, Australia, Thailand, Indonesia, Philippines, China, Japan, India, South Korea, Rest of Asia-Pacific (APAC) in the Asia-Pacific (APAC), Saudi Arabia, U.A.E, South Africa, Egypt, Israel, Rest of Middle East and Africa (MEA) as a part of Middle East and Africa (MEA), and Argentina, Brazil, and Rest of South America as part of South America.
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shashiemrf · 3 years
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Robotic Process Automation for Smartphone Manufacturing Market: Increasing Demand for Efficient Management Practices Report Till 2023
Industry Insight
While 2020 is being an extremely eventful year for robotic process automation for Smartphone manufacturing due to COVID-19 breakthrough, the global robotic process automation for Smartphone manufacturing market 2020 is showing some positive instincts, when studied by Market Research Future. As per COVID-19 impact analysis, the market has the potential to show immense growth, which is recorded at a rate of ~30.5% and is capable of reaching a valuation of USD 3992.6 million by 2023. The growth period has been estimated from the years 2018 to 2023. The earlier valuation accumulated by the market in 2017 was USD 807.9 million.
Top Driving Factors
The unforeseen challenges that occurred by the ongoing COVID-19 have influenced effectively to exhibit the long term growth projections on robotic automation Smartphone manufacturing market size. Thus, the study has identified a better growth perspective of the market with the help of some of the impacting factors prevailing is thus working in the factor to mark its future growth at a better pace.
The varying consumer interest has built a high need for deployment of technically advanced automation processes in the manufacturing and production process of the industry. A flexible production system with a high-end IT-enabled process offers a fast and safe production process, which is an efficient, flexible, reliable, and cost-effective solution. These factors have been necessarily considered as influential and responsible for the growth of the market.
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In fact, economic pressure has also affected the performance and growth of an industry, which is also one of the factors behind utilizing the automation process in Samsung manufacturing. The significant advantage of automation over conventional manufacturing processes include upgrading in quality and robustness of a process or product, high throughput or productivity, and reduction of direct human labor cost and expenses. This is yet another primary reason for the high growth of the robotic automation Smartphone manufacturing market.
On the contrary, the factor of the scarcity of investment by small & medium size industry and less accessibility of trained professional in developing economies is showing signs of market growth been hindered to some extent in the forecast period.
Regional Framework
The study takes a closer look at critical regional dynamics and the trends that will create lucrative avenues in emerging regional markets for digital process automation. The geographical overview of the global robotic automation Smartphone manufacturing market has been conducted in four major regions, including North America, Asia Pacific, Europe, and the rest of the world.
Owing to the mounting development in the IT industry, North America is likely to lead the robotic process automation for the Smartphone manufacturing market in the forecast period. North America is one of the leading regions across the world in terms of market share. The market for robotic process automation for Smartphone manufacturing in this region has a huge demand owing to high growth in the IT industry and mounting adoption of smartphones by consumers.
Asia-Pacific has also successfully taken second place in the Smartphone manufacturing market in robotic process automation as it is expected to expand at a faster pace during the forecast era. It was owing to the enormous demand for robotic process automation for the manufacturing of Smartphones, the robotic process automation for the Smartphone industry is experiencing high growth. Asia Pacific is likely to observe the highest CAGR in the coming years owing to escalating demand for Smartphones, soaring demand for outsourcing services, and leading markets such as South Korea, China, and Japan.
The robotic process automation for the Smartphone manufacturing market in the European region is likely to witness rapid growth in the forthcoming period.
Segmentation of Market: Robotic Automation Smartphone Manufacturing
The global robotic automation Smartphone manufacturing market has further been segmented along the following lines:
In terms of the robot type segment, the market has included Cartesian, SCARA, 6-axis robot, articulated, redundant, delta, dual-arm, and parallel. Among these, the 6-axis robot segment contributed as the largest market share in 2017, with a market value of USD 168.7 million, and now it might register the highest CAGR during the forecast period. Also, SCARA is the best suited for high-speed assembly, knitting, packaging, and other material handling applications.
In terms of component segment, the market has included Motor, generators, motor controls, automation equipment, and power transmission equipment
In terms of organization segment, the market has included Small & medium enterprises and large enterprises.
Top Market Players
The foremost market players effective in the global market are identified Seiko Epson Corporation, ABB Ltd, KUKA Robotics, Yaskawa Electric Corporation, Nice Ltd, Denso Wave Inc., Fanuc Corporation, Pegasystems Inc., Nachi Robotic System Inc., and Redwood Software.
Table of Content:
3 Market Dynamics
3.1 Market Growth Factors
3.2 Market Drivers
3.2.1 High Focus Of Industry On Achieving Energy Efficiency In Manufacturing Process
3.2.2 Growing Deployment Of IoT In Industrial Process
3.2.3 Growing Smartphone Integration Platform
3.3 Market Restraints
3.3.1 Scarcity Of Investment By Small & Medium Size Industry Is Affecting The Market Growth
3.3.2 Less Availability Of Trained Professional In Developing Economies For Implementing And Processing Automation System
4 Executive Summary
5 Market Factor Analysis
5.1 Porter’s Five Forces Analysis
5.2 Supply Chain Analysis
5.2.1 Robotic Process Automation Architecture
6 RPA For Smartphone Manufacturers Market
6.1 Introduction
6.2 Market Statistics
6.2.1 By Robot Type
6.2.1.1 Cartesian
6.2.1.2 SCARA
6.2.1.3 Articulated
6.2.1.4 Delta
6.2.1.5 6-Axis Robots
6.2.1.6 Redundant
6.2.1.7 Dual-Arm
6.2.1.8 Parallel
6.2.1.9 Others
6.2.2 By Component
6.2.2.1 Motors
6.2.2.1.1 Fractional AC Motors
6.2.2.1.2 Fractional DC Motors
6.2.2.1.2.1 Fractional Brushed DC Motors
6.2.2.1.2.2 Fractional Brushless DC Motors
6.2.2.1.3 Integral Motors
6.2.2.1.3.1 Integral AC Motors (LV)
6.2.2.1.3.2 Integral DC Motors (LV)
6.2.2.1.4 Medium Voltage Motors
6.2.2.1.5 Servo Motors
6.2.2.1.6 Stepper DC Motors
6.2.2.2 Generators
6.2.2.2.1 Low Power Generators
6.2.2.2.2 Medium Power Generators
6.2.2.2.3 High Power Generators
6.2.2.3 Motor Controls
6.2.2.3.1 AC Drives
6.2.2.3.2 DC Drives
6.2.2.3.2.1 Brushed DC Drives
6.2.2.3.2.2 Brushless DC Drives
6.2.2.3.2.3 Stepper DC Drives
6.2.2.3.3 Medium Voltage Drives
6.2.2.3.4 Servo Drives
6.2.2.3.5 Soft Starters & MCCs
6.2.2.4 Automation Equipment
6.2.2.4.1 Discrete Controllers & Visualization
6.2.2.4.1.1 Computer Numerical Controllers
6.2.2.4.1.2 Embedded Computer Boards, Modules And Systems
6.2.2.4.1.3 Networking Infrastructure Devices
6.2.2.4.1.4 I/O Modules
6.2.2.4.1.5 Others
6.2.2.4.2 Process Control
6.2.2.4.2.1 Distributed Controller
6.2.2.4.2.2 Process & Temperature Controllers
6.2.2.4.2.3 Process Instrumentation Devices
6.2.2.4.2.4 Others
6.2.2.4.3 Switchgear
6.2.2.4.3.1 MCB & RCDs
6.2.2.4.3.2 Electro-Mechanical & Solid-State Relays
6.2.2.4.3.3 Electronic Control Relays
6.2.2.4.3.4 Others
6.2.2.5 Power Transmission Equipment
6.2.2.5.1 Rotary Products
6.2.2.5.1.1 Backlash Rated Geared Product
6.2.2.5.2 Gearboxes
6.2.2.5.2.1 Geared Motors
6.2.2.5.3 Linear Products
6.2.2.5.3.1 Actuator Rod Less
6.2.2.5.3.2 Actuator Rod Style
6.2.2.5.3.3 Hydraulic Actuators
6.2.2.5.3.4 Others
6.2.3 By Organization Size
6.2.3.1 Small & Medium Enterprises
6.2.3.2 Large Enterprises
6.2.4 By Region
6.2.4.1 North America
6.2.4.1.1 US
6.2.4.1.2 Canada
6.2.4.1.3 Mexico
6.2.4.2 Europe
6.2.4.2.1 Germany
6.2.4.2.2 UK
6.2.4.2.3 France
6.2.4.2.4 Rest Of Europe
6.2.4.3 Asia-Pacific
6.2.4.3.1 China
6.2.4.3.2 Japan
6.2.4.3.3 India
6.2.4.3.4 South Korea
6.2.4.3.5 Taiwan
6.2.4.3.6 Rest Of Asia-Pacific
6.2.4.4 Rest Of The World
6.2.4.4.1 Latin America
6.2.4.4.2 Middle East & Africa
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sciencespies · 3 years
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NOAA to take first step toward a small satellite constellation
https://sciencespies.com/space/noaa-to-take-first-step-toward-a-small-satellite-constellation/
NOAA to take first step toward a small satellite constellation
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It’s a good thing the National Oceanic and Atmospheric Administration has plenty of time to prepare for its next generation of polar-orbiting weather satellites — because the changes the agency is contemplating are dramatic.
Instead of flying satellites the size of pickup trucks like the current Joint Polar Satellite System (JPSS), NOAA is exploring the benefits of feeding data supplied by a constellation of small satellites in low Earth orbit into weather forecast models.
“We would like to start the process of adopting more commercial practices in low orbit and seeing how we might implement them,” said Greg Mandt, NOAA JPSS program director. “If we spend the next five or six years seeing what we could do, that could produce quite an interesting paradigm shift.”
NOAA is not the only government agency exploring the benefits of gathering weather data with small satellites. The U.S. Space Force is funding development of small satellites to characterize clouds and provide weather data in military theaters of operations. The European Space Agency is developing a prototype for a constellation of small Arctic Weather Satellite spacecraft.
Government agencies are eager to profit from the steady stream of commercial innovation. Companies are relaying communications and gathering weather-related information and imagery with growing fleets of cubesats and small satellites in low Earth orbit.
“We’re trying to explore how to take advantage of all that,” Mandt said.
ADVANTAGE: SMALL SATELLITES
Many of the advantages for weather agencies are obvious.
Small satellites tend to be less expensive and lighter weight than their sizable counterparts. As a result, they fit on many different launch vehicles and several can be launched at the same time, unlike school bus or truck-size satellites that generally require a dedicated launch vehicle, said Nick Bucci, missile defense and space systems vice president at General Atomics Electromagnetic Systems.
Luis Gomes, AAC Clyde chief executive, said small satellites can be deployed in large numbers, forming cooperative constellations with sensors making simultaneous measurements across large areas.
Agencies also can upgrade technology quickly. Operational weather satellites carry sensors developed decades ago.
“With small satellites, you could update technology on a much more rapid schedule and at lower cost,” said Kevin Maschhoff, BAE Systems engineering fellow.
What’s more, companies have begun manufacturing cubesats and small satellites in large quantities, reducing the cost per spacecraft.
Traditional NOAA weather satellites designed to operate in orbit for at least seven years were expensive, often requiring a decade and several hundred million dollars to move from proposal to orbit.
“Can you break those observations into smaller pieces because with all the small satellite providers, it’s almost like Henry Ford’s Model T era,” Mandt said. “Instead of building a specialty car, we’ve now got the Model T. As long as you are not trying to turn it into a Ferrari, you can drive down the cost.”
In addition to buying commercial satellite buses, NOAA could turn to the commercial sector to transfer data rather than continuing to pay for government infrastructure like satellite dishes at McMurdo Station, Antarctica, and Svalbard, Norway.
“Imagine instead having your little satellites talk to communication satellites that deliver data to you in the cloud,” Mandt said. “If you commoditize the infrastructure, you can put your money in the instruments and the data products.”
CHANGING ATTITUDES
Still, changing NOAA’s approach to gathering data in low Earth orbit won’t be easy.
“You’ve got to change the attitude of engineers, mission assurance people, contracting officers and your review process,” Mandt said. “We’ve got to reinvent all of our processes at the same time.”
NOAA also needs new cost models because the ones created by NASA and the Defense Department tend to be based on missions involving large government satellites with multiple sensors.
Instead of addressing all those issues at once, NOAA plans to conduct a series of demonstrations while continuing to draw weather data from the JPSS constellation. (NOAA plans to launch the three remaining JPSS satellites in 2022, 2027 and 2032.)
“How do we take baby steps to test the sort of distributed architecture and commercial capability we can bring into our operation so that we still provide reliable data for the nation?” Mandt asked. “Can we do it in a more efficient way, and a cheaper way, that leads to better forecasting?”
NOAA hopes to begin addressing those questions with SounderSat, a concept proposed in the NOAA Satellite Observing System Architecture study. That study noted the importance of atmospheric temperature and moisture soundings to numerical weather forecasts and suggested small satellites equipped with sounders could be flown in the mid-2020s to fill data gaps created by the anticipated retirement of the U.S. Space Force’s Defense Meteorological Satellite Program and NOAA’s Polar Orbiting Environmental Satellites.
“SounderSat is the first low Earth orbit initiative off the blocks and we want to make it clear this is just the first part of an overall architecture,” Frank Gallagher said in January at the virtual American Meteorological Society conference.
NOAA laid the groundwork for SounderSat in 2020 by awarding contracts to companies to suggest contract approaches, sounding instruments and architectures. More than a dozen companies received six-month contracts worth tens or hundreds of thousands of dollars to furnish NOAA with information on miniature sounders and satellite constellations as well as price tags for supplying weather data from commercial constellations. Among them were weather satellite specialists Ball Aerospace, L3Harris Technologies and Raytheon Technologies, prime contractors Lockheed Martin, Maxar Technologies and Northrop Grumman, and small satellite manufacturers General Atomics and York Space Systems. Additional contracts went to Atmospheric Sciences and Technology Corp., BAE Systems and Brandywine Photonics, firms known for satellite instruments.
“I’m taking all that information and trying to shape that into the direction we want to go,” Mandt said. “Soundersat is our idea of how we would take that first step.”
Incredible shrinking weather satellites
The words “small weather satellite” mean different things to different people.
Some are thoroughly convinced that constellations of cubesats could gather the imagery and data meteorologists require for weather forecasting. Others see greater promise in satellites weighing 150 to 200 kilograms.
There’s little doubt, though, that as electronics components continue to shrink, weather satellites will become smaller.
“Everyone sees the writing on the wall,” said Brandywine Photonics President John Fisher.
Already, cubesats have proven adept at monitoring atmospheric temperature and moisture by noting variation in signals traveling from GPS and other navigation satellites.
Other weather instruments, though, may be better suited to satellites weighing as much as 180 kilograms that fit on Evolved Expendable Launch Vehicle Secondary Payload Adapter (ESPA) rings or 320 kilograms for an ESPA Grande. Originally developed to carry secondary payloads on Pentagon-funded Atlas 5 and Delta 4 launches, ESPA rings have become a standard for accommodating small satellites on government and commercial launches of EELV-class rockets, namely United Launch Alliance’s vehicles and SpaceX’s Falcon 9.
“At Ball we’ve found that a sweet spot for Earth observation or operational weather being the ESPA or ESPA Grande size because it is possible in many cases to pack good capability into a satellite that can collect data across the globe, store that data and be reliable,” said Cory Springer, weather and environment director for Ball Aerospace. “That’s a good size to take advantage of lower launch costs.”
BAE Systems sees promise in constellations of 60- or 70-kilogram satellites following one another in low Earth orbit to reveal changing atmospheric conditions over time, said Kevin Maschhoff, BAE Systems engineering fellow.
Luis Gomes, CEO of AAC Clyde Space, cites the merits of even smaller satellites. “In the next few years we will see [weather satellite] masses coming down as more and more instruments are made smaller,” Gomes said. “From the evolution we are seeing on the instrumentation side, we believe there is a sweet spot for many applications in the 10-kilogram to 50-kilogram range.”
In spite of company preferences, though, everyone noted that government requirements often determine satellite size for a particular program. “The mission drives the capability required onboard: the avionics, propulsion, pointing accuracies, sensors and power requirements for all of those,” said Nick Bucci, vice president for missile defense and space systems at General Atomics Electromagnetic Systems.
This article originally appeared in the May 2021 issue of SpaceNews magazine.
#Space
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iamaraja · 3 years
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Industrial Automation Global Market   Global Demand, share Growth and Industry Analysis 2021
Industrial Automation Global Market   - Overview
Industrial automation is a new technology which is widely being used in manufacturing sectors and can be defined as computer aided control devices which helps to control the operations and eliminate human involvement. Industrial automation has proven to be very effective in the mass production and where the quality needs to be maximized. Industrial automation involves integration of various components such as sensors, automation control system at different levels such as sensor level, automation level, supervision level and enterprise level. The sensor level is also known as the process level where the various kind so sensors are used for getting the values on continuous basis. Automation level majorly uses different embedded processors and algorithms to manage and control the process. Industrial automation includes systems such as SCADA and HMI for the various manufacturing process.
to grow at the CAGR of around 6.5%.
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Increasing global demand for efficient production system is pushing the industry players to emphasize on the development of new manufacturing process which is more efficient and maximises the output. Also, various development in field of IoT and development of new engineering technologies is also playing vital role in the growth of global market.
Key Players:
Siemens AG (Germany), ABB Ltd. (Switzerland), Emerson Electric Company (U.S.), General Electric Company (U.S.), Schneider Electric SE (France), Honeywell International, Inc. (U.S.), Mitsubishi Electric Corporation (Japan), Yokogawa Electric (Japan), Ametek, Inc. (U.S.), Rockwell Automation, Inc. (U.S.) and Fanuc (Japan) among others are some of the prominent players profiled in MRFR Analysis and are at the forefront of competition in the global Industrial Automation market. Industrial Automation have wide range of application in several industries including oil & gas, aerospace & defense, electrical & electronics, automotive & transportation, chemical, pharmaceuticals, mining & metals, food & beverages and electric power generation among others.
Industry News
November, 2017, ABB and Kawasaki Heavy Industries, two global industrial automation and robot suppliers, announced today that the companies will join forces to share knowledge and promote the benefits of collaborative robots, in particular those with dual arm designs. The global cooperation will become effective immediately. Under the new cooperation, which is the world’s first to focus on ‘cobots,’ both robot makers will continue independently manufacturing and marketing their own offerings while working together on joint technical and awareness opportunities. This includes educating policy makers, NGOs and the general public about the benefits of collaborative automation, and creating common industry approaches to safety, programming and communications.
December, 2017, -Toshiba Electronic Devices & Storage Corporation has today started to ship five new high-current photorelays in DIP4 and DIP6 packages, additions to its portfolio of photorelays incorporating MOSFETs fabricated with the latest U-MOS VIII process. The new photorelays offer multiple options, with an off-state output terminal voltage ranging from 30 to 200V and a steady on-state current of 0.7 to 5.0A. They can replace 1-Form-A mechanical relays in various DC and AC applications, contributing to improved system reliability and reducing the space needed for relays and relay drivers. They deliver a rated operating temperature of 110°C (max), making it easier to accommodate temperature margins in system designs. In addition, the new photorelays provide a rated transient on-state current three times larger than the rated steady on-state current, contributing to design safety.
December, 2017, -Emerson has agreed to acquire Cooper-Atkins, a leading manufacturer of temperature management and environmental measurement devices and wireless monitoring solutions for foodservice, healthcare and industrial markets. Cooper-Atkins is a longtime technology leader in foodservice markets with a comprehensive offering of temperature management and monitoring products for spot inspection and fixed location uses, including restaurants, supermarkets and other places where food is handled, prepared and stored. Their solutions are modernizing food quality management utilizing mobile and cloud-based quality, safety and compliance systems.
Industrial Automation Global Market   - Segmentation
Segmentation by Type: Fixed Automation and Programmable Automation
Segmentation by Technology: Supervisory control and data acquisition (SCADA), Programmable Automation Controller (PAC), Programmable Logic Controller (PLC), Distributed Control System (DCS), Human Machine Interface (HMI) among others
Segmentation by End Users: Machine manufacturing, Oil & gas, Aerospace & defense, Electrical & electronics, Automotive & transportation, Chemical, Pharmaceuticals, Mining & metals, Food & beverages and Electric power generation
Industrial Automation Global Market   - Regional Analysis
Asia Pacific region is dominating the market of industrial automation on the global level. The market is growing with positive YoY rate and is expected to do so. Increasing application areas on yearly basis and advancement in technology and integration with current manufacturing environment is driving the market on global scale. Also, rich presence of manufacturing companies and developing economy of Asian countries is playing major role in the market growth. North America stands as second largest market due to the high demand for semiconductor products and manufacturing. Technological advancement in North American countries is also one of the important factor supporting the market growth in North America. Europe on the other hand is showing positive growth rate towards the adoption of automation control systems. Growing automotive and power generation industries are key driver for the market growth.
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localocksmithnearme · 4 years
Text
Saturn Fob Keys And Remote Program Irvington NJ
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The trained locksmiths at Irvington Key Replacement can handle all of your Saturn key smith and security urgencies. We are glad to conduct a diversity of car keys, ignition and lockes services likewise the installation of push-to-start ignition and car main computer. Our skilled lock smiths outdo in mobile ignition cylinder repair, lockout and replacement keys circumstance and our major focus is to do the best possible to ensure your safety and protection by producing real time and highly qualified service 24-7 using current diagnostic equipment, key programmers and laser cut key cutters and furthermore Irvington NJ class leading specialist and know-how lock-smith.
Models: Minivan, Compact, Relay, GM, ION, Curve, Flextreme, Astra, Electric, Wagon, Roadster, VUE, S-Series, CV1 and Outlook
Saturn lost key made in Irvington NJ
If you lost all the keys to your vehicle or need an extraneous remote fob-key computed in Irvington NJ, glancing for a noteworthy nimblest at your location Saturn keys replacement solution, you should continue reading those lines, pick up the phone and dial and our keys replacement workforce will arrive to your place of choice on a prompt.
At Irvington Key Replacement, we are well-informed of the fact that every single considerable town in the United States of America has leastwise a bit lock-smith congregations, nevertheless what car owners don't know is that every keysmith in Irvington NJ in general experienced in one individual of the profession subject. Large scale key smith bands will conduct a whole in one residential, automotive, safe or commercial lock-man services and even vehicle hauling and other service and many times use uneducated technicians that might present a risk to your possession or charge more for a a simple task on the grounds that he is usually on higher pay rank duty like safecracking or high security camera fixation.
About Saturn key and lock infrastructure
Saturn motor vehicle brand was produced by the United States of America vehicle maker GM in Detroit, Michigan. The brand was 1st distributed in the U.S.A in 1985 as common motor vehicles. Since 2005  Saturn vehicles utilize transponder keys that can be duplicated in a smooth and low-cost process, although advanced vehicles use enciphered transponders that should be programmed to the car employing a specific diagnostic appliances and if all keys are lost, the car computer system should be re-boot.
Advanced vehicles beginning from  2007 typically assembled with the most advance stylish Passive Entry Passive Start (PEPS) smart key with components as keyless entry, pushtostart and blind spot information infrastructures.
Ignition lock repair
When drivers locking and unlocking the car ignition so many time, it is certainly typical to put up with some kind of ignition malfunction and the signs is possibly key got caught in the crater hole and would not turn, ignition key wont turn, dash-board security lights are on and ignition key is stiffly turning and you can't start your vehicle.  
The source of those troubles can be a overused key or an ignition cylinder problem and in one and the other scenarios, ignition replacement or repair is a job for a highly qualified agent, so our recommendation not to try to repair the ignition lock by incompetent hands since it may going to lead to a greater disturbance.
Overused Saturn ignition key
Confronting problem is due to a bad key, simply duplicating the key going to likely copy the problem to the new copied key. Alternative to duplicating the overused key, a qualified car keysmith have to employ suitable Saturn programmers, cutters and diagnostic tools to forge a fresh key based on the vehicle identification number.
Damaged Saturn ignition lock
Confronting problem is due to the ignition lock, it is possibly as a result of foreign object or obstacle stuck in the ignition key-pit or perhaps a loose or broken arbor or axis inside the ignition lock barring the lock from turning. Utilizing suitable ignition replacing, programming and diagnostic equipment a lockman have to pull any foreign object or obstacle from within the key-hole rekey or strengthen ignition cylinder or even outplace the whole ignition.
Transponder key create
Outplacing a motor vehicle transponder chipped key is not as efficient as getting a metal blade key! Latest cars equipt with an ECM in the vehicle which should be programmed to accept the new key. This convoluted course has to be done certified and trained keysmith or by the dealer employing suitable programming machine to certify that the key is correctly operational and adequate to turn over your car.
Irvington Key Replacement transponder keys staff are thoroughly trained to compile and cut keyless entry device, switch-blade key, sidewinder and transponder chip keys for close to all model, make and year.  
Saturn smart-key
Smartkeys are an ultimate feature in car user comfort and convenience, you are able to unlock and lock your car door as well as igniting the car engine – without even holding the key. You merely need to carry it on yourself, whether in your pocket or handbag.
Whenever the car user walk by their car, the proximity key is detected by a paired radio-frequency transponder hidden inside the keyless device. The car door unlock and open when the car user rips the lock handle. The car engine powers up pushing a button on the dash board. The button is replacing the metal blade key by releasing electricity on the engine combustible system.
Locking the car doors when exiting is just as comfortable. The car user merely clicks a button on the door lock handle – many proximity key structures even lock itself when the car user steps out of reach.
Copy vs lost car keys
The actual process of cutting and programming a car key differ among individual year and models of your Saturn. On several vehicles, on-board programming can be employed for extre key programming. This process avoid the need for expensive computer equipment and codes when linking a new chipped key to the vehicle. Models who don't support On board key duplication  option need to have a supplemental key programmed employing a compatible computer equipment that is handy solely to Saturn dealership or a legitimate locksmith.
This coding machine priced as approximately several grands to acquired which is why having a digital car key is at least $60 more then to only cut an old-style mechanical key.
If you lost all keys to your car you will probably need to get your vehicle towed to the dealer-ship or find a locksmith to arrive to your location to reprogram the vehicle computer to employ the new key and reject the lost one. This rekey process requisite proof of ownership papers like title, insurance or registration and will priced as approximately $180–$250.
24 hrs car lock-out
Locking your keys in the front seat, trunk or golve box is incredibly distressing episode and a quick car lockout response is compelling both to your safety and accessibility. To Stake the briskest car door opening service in town, we assign lockpick skillful staff members who are practicable 24 hours to take place at your place to unlock your door and trunk, let you back inside your car and put you on your way to your next activity.
Motor vehicle locks refitting
Irvington Key Replacement is glad to offer all style of Saturn qualify services on site to alter a abducted, busted or misplaced keys. Practically all modernized car are equipped with electrical locks and key technology and the course prescribed to get your lock conversed ought to have the good programmer for the certain motor vehicle. Instead of towing your car to the dealer, just gather the telephone and call our customer care office in Irvington NJ and one of our car re keying staff will be with you as swiftly as possible with a unsteadfast workshop van accommodating recent key cutters, ignition parts, blank keys and programmers ready to work out any style of urgent manifestations.
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Our company is proud for a prominence as a honored and incredibly rapid reply and our task force are trained to get the job done ensuring ultimate satisfaction for an affordable cost every time you need one.. If you are inspecting for Saturn key replacement service 24HR in Irvington New Jersey, call (973)200-4870 for a reliable local mobile locksmith, lost car keys made, ignition repair, transponder, keyless entry remote fob cut and program.
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engrfahadblr · 4 years
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Study Plan | Study Plan Template | Study Plan Sample | Study Plan Example
https://www.chinesescholarshipcouncil.com/?p=553&wpwautoposter=1591247428 Study Plan | Study Plan Template | Study Plan Sample | Study Plan Example Academic Background: I have completed my undergraduate studies in Electrical engineering from “ABCDUniversity of Engineering and Technology”, Pakistan, in March 2020, with a CGPA of 3.86 out of 4.00. I was an active somehow indulgent student among others during my undergraduate studies, very often involved in many curricular and co-curricular activities. In fact, I was up to the mark and honored in the top 1’slist of 120 students in my undergraduate class. If observed by the meritorious efforts I remain very competent and I have passed all entrance tests conducted by the academic institution of my education with high achievements and secured overall 4th place in the whole district. I did my final year thesis project on “Design, development, and fabrication of under/over voltage relay using static devices” with the group of five members in which I was made the Group Leader. The fabricated relay can be used for the automatic protection of household appliances and power system against voltage related problems. In this project, I learned and researched automated control and protection using Circuit Breakers and Relays along with other high-speed automatic control and protecting equipment’s involved in automation of the modern systems. While working on this project I found strong motivation in myself towards graduate study and research in the area of power system automation. At present, I am working as a Maintenance Engineer in Dawlance Group of Companies(the leading household appliances company in Pakistan); my job’s major responsibilities include; Maintenance and Automation of industry’s power system and machines along with the planning and the proper allocation of available resources to achieve the smooth and efficient operation of the plant by conducting routine and reactive preventive maintenance activities. Here, inDawlance, I have learned, researched and practically implemented the applications of electrical automation engineering in manufacturing process along with the extensive knowledge of Electrical automation devices like digital relays, vacuum and oil circuit breakers, Programmable logic controllers, Programmable automation controllers, Human Machine Interface and instrumentation devices. Furthermore, I Led the project “Energy saving by the optimization of electric motor usage” with annual savings of 1.2 Million PKR by conducting efficiency analysis, Right-sizing of installed motors, formulating the saving calculations and obtaining USAID OFFER by negotiations with vendors and USAID audit authorities. Also because of ardent interest and motivation towards power system automation, I have selected for 16 weeks internship in National Transmission & DispatchCompany; the sole electric power transmission company of Pakistan. Where I gained quality level knowledge and working experience of Grid SystemOperations (GSO), Protection and Instrumentation (P & I), SCADA, Metering and Testing (M & T). Along with these technical aspects I also earned practical knowledge about transmission system planning including Power Flow Studies, Reactive power compensation studies, Reliability, and Stability Analysis with respect to the interconnection of distributed generation with the transmission system. My work at NTDC was highly praised and I was awarded the certificate of appreciation by the senior management. My Personality: By fact, I am the socially active person with friendly nature, a good communicator indeed who is blessed with many friends. I keep a keen view of the reality of life thus approach people with positive mind and attitude and always prove to be helpful with honest efforts and true dedication. Besides that, I always feel very joyous and fortunate to meet and greet people belonging to different backgrounds and cultures. As such meetings are always important because they proved to be beneficial in future also it makes things easy to cope whether one works or studies in his own country or outside the country. Study Plan in China:I would like to apply for the Master’s Degree in Electrical Power system and its automation in China because of my current industrial job experience, past internship and my final year project I come to know the vast practical applications of the automation engineering, this caught my attention and created a thirst of knowledge in me to study my chosen course. My motto is to work in an international field related to Electrical Engineering. Therefore, I would like to gain deeper theoretical and practical knowledge in starting and managing most innovative projects. During my studies, with great hidden abilities in myself I will try to come up with the best of everything; to accompany the professors and university colleagues in carrying out research and exploring for immense exciting industrial mysteries in the field of power system Automation. After completion of my master’s studies, I hope to be able to take part in maximizing my country’s research technology in such fields to benefit its economy and enhance the living standards of my compatriots. I believe that this Masters Program will provide me with the chance to get to know with Electrical systems and affiliates me dedicatedly to the industries, which are living examples of the art of Electrical and automation engineering. I hope that I can gain more experience in dealing with situations, peoples, systems, and demands which will be of a great help in my future career. Reasons to study in China: Now the question arises, “Why China?” Reading the books, watching the news, analyzing and observing the people of China, I am really impressed by the way these individuals have proved themselves to be dedicated to their work and with true efforts they have set China as a successful example for other third world or developed countries. The fast-growing economy, technological advancement and the global ranking education institutes of China with high reputation makes a great aspiration to the students and professionals for the better career perspectives. Thus such kind of positivity has boosted my confidence further and I am highly satisfied with the decision I have taken. Moreover, China’s diverse cultural norms and values, the famous gentle hospitality of its people and Pakistan-China all weather friendly relations since past to promote bilateral trade, acceptance and peace to both sides in great clarity make me feel China as my second homeland; also my family fully supports my choice for China being my preference for graduate studies. All these reasons put together to make China an ideal place for me to do my Masters degree. Concluding it, with high hopes I believe this application will receive your favorable consideration and I will be happy to provide any additional information you may need. I look forward to receiving your reply.
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letsmahiworld-blog · 5 years
Text
Power Substation Automation and Integration Market Detailed Analysis and Forecast 2017-2025
Global Power Substation Automation and Integration Market: Snapshot
Smart grid infrastructures have fundamentally transformed the electric power industry in a number of developed and developing nations. They play a seminal role in power substation automation and integration and have increased implementation in the electric sector. They essentially consist of advanced control methods and modern system software infrastructure. Out of several components of smart grid, primary are smart sensing & metering technologies and intelligent electronic devices (IEDs), which have greatly helped in the automation of power substations. These intelligent electronic devices contain microprocessors that can provide inputs and outputs to the smart grid system, perform some essential primary control service, and help in the exchange of operational and non-operational data. Most common IEDs include protective relays, load survey, revenue meters, programmable logic controllers (PLCs), and power equipment controllers. Supervisory control and data acquisition (SCADA) systems are the key to operational data management and are used to control and monitor the power system in substation.
Get Sample Copy of the Report @ https://www.tmrresearch.com/sample/sample?flag=B&rep_id=209
Smart metering technologies furnish data that help in remote monitoring, manage time-of-use pricing, and enable demand-side management for consumers of utilities. Along with smart metering systems, SCADA have become ubiquitous in smart grid technologies. These components are deployed to improve as well as automate operation and maintenance (O&M) efficiencies. Several vendors offering analytical tools for integrating information technology (IT) and operational technology (OT) capabilities in power substation must ensure that utilities can extract more valuable information from smart meters. Non-operational data consists of important information on event summaries through oscillographic reports and sequential events records. In addition, SCADA also helps grid operators and managers to prevent any security breach and cyberattacks, which has boosted their popularity in power substation automation and integration market.
Global Power Substation Automation and Integration Market: Overview
Power substation automation and integration facilities are used to enhance the command, automation, and control within substations. The technology is mainly used in electrical distribution systems. Intelligent electronic devices used to generate data are the most commonly used machines in substation automation.
The power substation automation and integration market report provides a comprehensive market overview covering the various drivers and restraints, and identifying the market opportunities. It is compiled using exhaustive data obtained via proven methods of research and from trusted industrial sources. Presented in a chapter-wise format, the report also includes various graphs, infographs, statistics, and data aimed providing added information regarding the global power substation automation and integration market.
It also studies the effect of Porter’s five forces on the market. The analysis gauges the bargaining power of buyers and sellers, threat from substitutes and new entrants, and the degree of competition prevailing in the market. Information thus compiled in the report is aimed at providing the leading companies a better perspective of the prevailing business dynamics and help them create successful business strategies.
Request TOC of the Report @ https://www.tmrresearch.com/sample/sample?flag=T&rep_id=209
Global Power Substation Automation and Integration Market: Trends and Opportunities
The power substation automation and integration market is gaining impetus from the increasing adoption of smart grid infrastructures, which are also fast replacing the existing power infrastructures. The rising demand for the former is attributed to the multifunctional solutions they provide, which majorly are in compliance with the advanced protocols of communication. Additionally, the market is expected to gain impetus from the rising need for improving the grid efficiency and reliability.
Despite witnessing positive growth, the high initial investment required to deploy power substation automation and stringent regulations could hamper the market’s trajectory to an extent.
Global Power Substation Automation and Integration Market: Regional Outlook
Regionally, while North America established dominance in the global power substation automation and integration market, Asia Pacific is projected to report a higher CAGR during the course of the report’s forecast period. Due to the considerably high industrial penetration, the demand for power substation automation and integration will continue to remain high in North America. However, the growth witnessed across major economies is likely to stagnate in the forthcoming years, compelling the leading market players to look for opportunities in developing nations. In Asia Pacific they will discover lucrative prospects as emerging nations exhibit rapid industrial growth and flourishing economies.
Global Power Substation Automation and Integration Market: Vendor Landscape
The vendor landscape analysis includes profiles of companies such as ABB Ltd., Cooper Power Systems Inc., Schweitzer Engineering Lab Inc., Alstom S.A., Siemens AG, General Electric Co., and NovaTech LLC among others. The analysis covers financial reports of the companies profiled, an evaluation into the recent business strategies and subsequent effects, strengths and weaknesses, and the evolution of their operations over the years. Based on research thus conducted, the report provides refined outlook to assist the market players, both existing and new entrants, create winning business strategies for the future.
Read Comprehensive Overview of Report @ https://www.tmrresearch.com/power-substation-automation-integration-market
About TMR Research:
TMR Research is a premier provider of customized market research and consulting services to business entities keen on succeeding in today’s supercharged economic climate. Armed with an experienced, dedicated, and dynamic team of analysts, we are redefining the way our clients’ conduct business by providing them with authoritative and trusted research studies in tune with the latest methodologies and market trends.
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Text
Power Substation Automation and Integration Market Set to Surge Significantly During 2025
Global Power Substation Automation and Integration Market: Snapshot
Smart grid infrastructures have fundamentally transformed the electric power industry in a number of developed and developing nations. They play a seminal role in power substation automation and integration and have increased implementation in the electric sector. They essentially consist of advanced control methods and modern system software infrastructure. Out of several components of smart grid, primary are smart sensing & metering technologies and intelligent electronic devices (IEDs), which have greatly helped in the automation of power substations.
Get Brochure of the Report @ https://www.tmrresearch.com/sample/sample?flag=B&rep_id=209
These intelligent electronic devices contain microprocessors that can provide inputs and outputs to the smart grid system, perform some essential primary control service, and help in the exchange of operational and non-operational data. Most common IEDs include protective relays, load survey, revenue meters, programmable logic controllers (PLCs), and power equipment controllers. Supervisory control and data acquisition (SCADA) systems are the key to operational data management and are used to control and monitor the power system in substation.
Smart metering technologies furnish data that help in remote monitoring, manage time-of-use pricing, and enable demand-side management for consumers of utilities. Along with smart metering systems, SCADA have become ubiquitous in smart grid technologies. These components are deployed to improve as well as automate operation and maintenance (O&M) efficiencies. Several vendors offering analytical tools for integrating information technology (IT) and operational technology (OT) capabilities in power substation must ensure that utilities can extract more valuable information from smart meters. Non-operational data consists of important information on event summaries through oscillographic reports and sequential events records. In addition, SCADA also helps grid operators and managers to prevent any security breach and cyberattacks, which has boosted their popularity in power substation automation and integration market.
Global Power Substation Automation and Integration Market: Overview
Power substation automation and integration facilities are used to enhance the command, automation, and control within substations. The technology is mainly used in electrical distribution systems. Intelligent electronic devices used to generate data are the most commonly used machines in substation automation.
The power substation automation and integration market report provides a comprehensive market overview covering the various drivers and restraints, and identifying the market opportunities. It is compiled using exhaustive data obtained via proven methods of research and from trusted industrial sources. Presented in a chapter-wise format, the report also includes various graphs, infographs, statistics, and data aimed providing added information regarding the global power substation automation and integration market.
Get TOC for Detailed Facts and Numbers @ https://www.tmrresearch.com/sample/sample?flag=T&rep_id=209
It also studies the effect of Porter’s five forces on the market. The analysis gauges the bargaining power of buyers and sellers, threat from substitutes and new entrants, and the degree of competition prevailing in the market. Information thus compiled in the report is aimed at providing the leading companies a better perspective of the prevailing business dynamics and help them create successful business strategies.
Global Power Substation Automation and Integration Market: Trends and Opportunities
The power substation automation and integration market is gaining impetus from the increasing adoption of smart grid infrastructures, which are also fast replacing the existing power infrastructures. The rising demand for the former is attributed to the multifunctional solutions they provide, which majorly are in compliance with the advanced protocols of communication. Additionally, the market is expected to gain impetus from the rising need for improving the grid efficiency and reliability.
Despite witnessing positive growth, the high initial investment required to deploy power substation automation and stringent regulations could hamper the market’s trajectory to an extent.
Global Power Substation Automation and Integration Market: Regional Outlook
Regionally, while North America established dominance in the global power substation automation and integration market, Asia Pacific is projected to report a higher CAGR during the course of the report’s forecast period. Due to the considerably high industrial penetration, the demand for power substation automation and integration will continue to remain high in North America. However, the growth witnessed across major economies is likely to stagnate in the forthcoming years, compelling the leading market players to look for opportunities in developing nations. In Asia Pacific they will discover lucrative prospects as emerging nations exhibit rapid industrial growth and flourishing economies.
Read Comprehensive Overview of Report @ https://www.tmrresearch.com/power-substation-automation-integration-market
Global Power Substation Automation and Integration Market: Vendor Landscape
The vendor landscape analysis includes profiles of companies such as ABB Ltd., Cooper Power Systems Inc., Schweitzer Engineering Lab Inc., Alstom S.A., Siemens AG, General Electric Co., and NovaTech LLC among others. The analysis covers financial reports of the companies profiled, an evaluation into the recent business strategies and subsequent effects, strengths and weaknesses, and the evolution of their operations over the years. Based on research thus conducted, the report provides refined outlook to assist the market players, both existing and new entrants, create winning business strategies for the future.
Highlights of the report:
A detailed analysis of key segments of the market
Recent developments in the market’s competitive landscape
Detailed analysis of market segments up to second or third level of segmentation
Historical, current, and projected future valuation of the market in terms of revenue and/or volume
Key business strategies adopted by influential market vendors
Outline of the regulatory framework surrounding and governing numerous aspects of the market
Growth opportunities in emerging and established markets
Recommendations to market players to stay ahead of the competition
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mandarworld · 5 years
Text
Mobile Robotics Market 2018 Revenue Analysis, Developments and Growth Factors 2022
Global Mobile Robotics Market – Overview
Mobile Robotics Market Research Report 2018 - Global Industry analysis by Key Companies, Type, Application, Market Share, Growth Rate, and Key Country forecast to 2023. Mobile Robotics Industry depth analysis is done for North America, Europe, APAC and Rest of the World. Mobile Robotics market growing at rapid pace over the forecast period of 2018 to 2022.
Global Mobile Robotics Market Research Report- Forecast 2022 that the segment will expand its worth to US $15 billion with a complimenting CAGR of 16 per cent in the forecast period.The wave of automation has been making inroads into various sectors and industries in recent times. Due to this fact, the mobile robotic segment has expanded quite rapidly. Market Research Future, a firm which specializes in market reports related to the Semiconductor & Electronics Technology sector among others, published in its recent report on Technological advances have created tremendous opportunities for implementation of these concepts to various sectors. Mobile robots are being employed to address various requirements in the industrial and consumer sectors. As mobile robotics can free up human resources from mundane work activities, making them effectively available for other business conducive activities. Industries like aerospace and defense have demonstrated a high demand level for the mobile robotics market. These industries have various workflows that need mobile robots and the technical nature of work has led to these sectors becoming primary demand generators.
Get Sample of Report @ https://www.marketresearchfuture.com/sample_request/1946
Key players
The prominent players in the market of global mobile robotics market are –
iRobot Corporation (US),
Honda Motor Co., Ltd. (Japan),
Denso Corporation (Japan),
KUKA Robotics Corporation (Germany),
Northrop Grumman Corporation (US),
Harvest Automation (US), FANUC Ltd (Japan),
Epson America, Inc., (US),
Universal Robots (Denmark)
Yaskawa Motoman Robotics (US)
Global Mobile Robotics Market – Segments
The mobile robotics market has been segmented on the basis of components, type, application, industry and region.
On The Basis Of Components:  Hardware and Software.
On The Basis Of Types: Ground Vehicles, Aerial Vehicles and Marine Vehicles.
On The Basis Of Application: Inspection & Maintenance, Surveillance & Security among others
On The Basis Of Industries: Logistics & Warehousing, Manufacturing, Aerospace & Defense, Healthcare, Marine, Entertainment among others.
On The Basis Of Region: Asia Pacific, Europe, North America, Latin America and the Middle East & Africa.
Latest Industry News:    
July 2017 DHL and technology group Wärtsilä have revealed the successful completion of a pilot of mobile robots from Fetch Robotics in the company’s central distribution centre in Kampen, the Netherlands. The warehouse manages Wärtsilä’s spare parts business, from order intake to customer delivery, and is run by DHL. The pilot looked at how such robots could be used to improve the daily operations of the warehouse and to see how humans and robots worked together. Workers can interact with the robots via touchscreen and send them on their journeys with a push of a button. The autonomous mobile robots have a loading capacity of 78 kilogrammes and can cover a distance of two meters per second.
Sep 2017 Kuka has launched an autonomous logistics robot in the form of a mobile platform which are by now quite familiar in the logistics industry. The robot maker says its Kuka KMP 1500 navigates using the SLAM method, which stands for Simultaneous Localization and Mapping, utilising laser scanners. The robot is highly flexible, and features precise maneuverability and positioning using the omni-directional mecanum wheels and an accurate lifting mechanism. Kuka says the KMP 1500 is the company’s answer to the increasing demand of production departments for shorter response times and greater flexibility in their manufacturing concepts.
Sep 2017 Magna-Power which is into manufacturing of programmable power products for industrial and research applications around the world from its 73,000-square-foot facility in Flemington, N.J. After deploying two collaborative mobile robots, the company has improved logistics and efficiency, freeing the equivalent of three full-time employees from the repetitive, low-value transportation of components and assemblies.
Aug 2017 Swisslog Healthcare, a leading supplier of solutions for medication and supply chain management in healthcare, announces its investment in Savioke, developer of the Relay autonomous delivery robot, a friendly indoor service robot that works safely, securely and reliably in human environments. This new partnership allows the companies to jointly develop services and solutions that increase health systems’ efficiency and enable them to deliver better patient care.
Dec 2017 Canvas Technology says it has raised $15 million to accelerate the development of its autonomous robotic systems for the logistics sector. Canvas says it’s Series A financing was led by Playground Global, with participation from previous investors, including Xplorer Capital, AME Cloud Ventures and Morado Ventures. Canvas Technology has built an autonomous system for movement of mobile vehicles in factories and warehouses. Canvas is particularly focused on fast-moving and changing environments.
Global Mobile Robotics Market - Regional Analysis
The regional analysis of mobile robotics market is being studied for region such as Asia pacific, North America, Europe and Rest of the World. Asia-Pacific is leading the market of mobile robots due to growing economy of the countries and rich environment of manufacturing industries. Major countries such as China, India, and Japan are contributing heavily in the growth of mobile robotics market whereas North America stands as second biggest market. High spending of government in aerospace and defense is one of the key driver for the market growth of Mobile Robotics. Europe stands as third biggest market due to the strong presence of healthcare industry in France, Germany & U.K among other countries.
TABLE OF CONTENTS
1 Executive Summary
2 Scope Of The Report
2.1 Market Definition
2.2 Scope Of The Study
2.2.1 Research Objectives
2.2.2 Assumptions & Limitations
2.3 Markets Structure
Continued…
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LIST OF TABLES
Table1 North America: Mobile Robotics Market, By Country, 2018–2023
Table2 Europe: Global Mobile Robotics Market, By Country, 2018–2023
Table3 Asia-Pacific: Mobile Robotics Market, By Country, 2018–2023
Table4 Middle East & Africa: Mobile Robotics Market, By Country, 2018-2023
Continued…
LIST OF FIGURES
FIGURE 1 Global Mobile Robotics Market Segmentation
FIGURE 2 Forecast Methodology
FIGURE 3 Five Forces Analysis Of Global Mobile Robotics Market
FIGURE 4 Value Chain Of Global Mobile Robotics Market
Continued…
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Power Substation Automation and Integration Market – Growth Strategies Recommendations By Experts 2025
Global Power Substation Automation and Integration Market: Snapshot
Smart grid infrastructures have fundamentally transformed the electric power industry in a number of developed and developing nations. They play a seminal role in power substation automation and integration and have increased implementation in the electric sector. They essentially consist of advanced control methods and modern system software infrastructure. Out of several components of smart grid, primary are smart sensing & metering technologies and intelligent electronic devices (IEDs), which have greatly helped in the automation of power substations. These intelligent electronic devices contain microprocessors that can provide inputs and outputs to the smart grid system, perform some essential primary control service, and help in the exchange of operational and non-operational data. Most common IEDs include protective relays, load survey, revenue meters, programmable logic controllers (PLCs), and power equipment controllers. Supervisory control and data acquisition (SCADA) systems are the key to operational data management and are used to control and monitor the power system in substation.
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Smart metering technologies furnish data that help in remote monitoring, manage time-of-use pricing, and enable demand-side management for consumers of utilities. Along with smart metering systems, SCADA have become ubiquitous in smart grid technologies. These components are deployed to improve as well as automate operation and maintenance (O&M) efficiencies. Several vendors offering analytical tools for integrating information technology (IT) and operational technology (OT) capabilities in power substation must ensure that utilities can extract more valuable information from smart meters. Non-operational data consists of important information on event summaries through oscillographic reports and sequential events records. In addition, SCADA also helps grid operators and managers to prevent any security breach and cyberattacks, which has boosted their popularity in power substation automation and integration market.
Global Power Substation Automation and Integration Market: Overview
Power substation automation and integration facilities are used to enhance the command, automation, and control within substations. The technology is mainly used in electrical distribution systems. Intelligent electronic devices used to generate data are the most commonly used machines in substation automation.
The power substation automation and integration market report provides a comprehensive market overview covering the various drivers and restraints, and identifying the market opportunities. It is compiled using exhaustive data obtained via proven methods of research and from trusted industrial sources. Presented in a chapter-wise format, the report also includes various graphs, infographs, statistics, and data aimed providing added information regarding the global power substation automation and integration market.
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It also studies the effect of Porter’s five forces on the market. The analysis gauges the bargaining power of buyers and sellers, threat from substitutes and new entrants, and the degree of competition prevailing in the market. Information thus compiled in the report is aimed at providing the leading companies a better perspective of the prevailing business dynamics and help them create successful business strategies.
Global Power Substation Automation and Integration Market: Trends and Opportunities
The power substation automation and integration market is gaining impetus from the increasing adoption of smart grid infrastructures, which are also fast replacing the existing power infrastructures. The rising demand for the former is attributed to the multifunctional solutions they provide, which majorly are in compliance with the advanced protocols of communication. Additionally, the market is expected to gain impetus from the rising need for improving the grid efficiency and reliability.
Despite witnessing positive growth, the high initial investment required to deploy power substation automation and stringent regulations could hamper the market’s trajectory to an extent.
Global Power Substation Automation and Integration Market: Regional Outlook
Regionally, while North America established dominance in the global power substation automation and integration market, Asia Pacific is projected to report a higher CAGR during the course of the report’s forecast period. Due to the considerably high industrial penetration, the demand for power substation automation and integration will continue to remain high in North America. However, the growth witnessed across major economies is likely to stagnate in the forthcoming years, compelling the leading market players to look for opportunities in developing nations. In Asia Pacific they will discover lucrative prospects as emerging nations exhibit rapid industrial growth and flourishing economies.
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Global Power Substation Automation and Integration Market: Vendor Landscape
The vendor landscape analysis includes profiles of companies such as ABB Ltd., Cooper Power Systems Inc., Schweitzer Engineering Lab Inc., Alstom S.A., Siemens AG, General Electric Co., and NovaTech LLC among others. The analysis covers financial reports of the companies profiled, an evaluation into the recent business strategies and subsequent effects, strengths and weaknesses, and the evolution of their operations over the years. Based on research thus conducted, the report provides refined outlook to assist the market players, both existing and new entrants, create winning business strategies for the future.
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Big Diesel Generators for Sale
They're diesel generators for sale focused primarily on power generation, and they now supply extra generator options than any other producer. Nonetheless, choosing the best generator is just not too simple. Understanding what form of performance you require is important to serving to you make the right determination about which is best for you. A reliable electrical technician can come to your property and consider whether or not your electrical system is configured for simple begin, clean integration, and reliable efficiency. You additionally may be pondering of best diesel generator for sale synchronising with different diesel generators, or worrying about where you'll home your gas, or management the system. You may select to have your diesel generator inbuilt any of the next ways and select what measurement of fuel tank, colour and so forth. And even which control systems you favor. The Elite Diesel Generator is equipped with Good Yr? Evaluate Diesel Powered Generator fashions, specs and prices. Silent Generators - Each Generator can either be absolutely computerized or handbook.
For enterprise makes use of, diesel generators are normally the better alternative. Diesel engines are provided with either non isochronous or isochronous governors. Within the enterprise world, the necessity for energy being provided to your business can mean the difference between you staying in business and also you dropping it all in a matter of hours or days. Lengthy Run Tank - Upto 30 hours on ‘LR’ models. On the subject of Australia generators, as talked about earlier there are additionally solar powered fashions in such a way that you just need not carry any type of fuels like gasoline, diesel, etc… for recharging it. Now with a widespread distribution across Australia to individuals and corporations, our merchandise including diesel generators Perth are sourced direct from factories and are continuously upgraded with design enhancements and offered on to you. Additionally they supply different used portable diesel generators. Family/Residential- Cummins residential generators supply highly effective backup options. Carrier impartial colocation solutions are the clear alternative more than provider distinct providers, for today’s enterprise data heart consumers. Modest vitality generators are each rated with two distinctive wattage measurements.
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Which questions can you consider for your household application uses... Do you wish to power your electrical appliances often?
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Do you want to exclusively use it for emergencies? Do you would like to use it to travel camping and/or backpacking?
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Do you wish to power small appliances or large? Do you would like to create your own natural energy? Do you wish to be green and save environmental surroundings? Having a generator providing you with the best quantity of power is important and must be determined before you make a purchase. Talking to someone who is knowledgeable in regards to the several types of generators available as well as the information about gauging the correct sized generator will help you to find the equipment which will meet your needs and requirements. Other great generator manufacturers include Cummins Onan, Caterpillar, Kubota, Yanmar, Kipor and CAT. They also have similar models with additional or less the same features. It's entirely your choice where coverage want to your diesel generator. Just take into account that you should always opt for generators that are produced by well-known manufacturers. This way, you can be sure regarding the company's generator and you'll also be sure that they will be capable of supply you with a warranty to your purchase.
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storjblog · 7 years
Text
Storj Bytes Community Quarterly Newsletter - September 2017
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Welcome to Storj Bytes, a quarterly newsletter from the Storj Labs team. Storj Bytes is your resource for the latest product and technology updates and a look ahead at our roadmap. It also details community feedback and how we’re integrating it into our work.
Storj Labs is thriving with product and technology adoption because of you, the community. Every single community member is crucial and plays a role in advancing distributed storage in our industry and how Storj grows. Without our ecosystem of Farmers, Renters, Moderators, Contributors, and Developers, many of whom have been with us since the very beginning, Storj wouldn’t be what it is today.
We’re now, as a community, in a position to drive the future of blockchain-based storage for all. We’ve finalized our token sale and are poised to accelerate company growth and development of the platform. We’ve aggregated community feedback and are focusing in the near term on improved onboarding and consistent payment plans. Development and services are our priority in Q4, and we hope this newsletter addresses these topics and provides visibility into what we are currently building and what new capabilities are on the horizon.
TECHNOLOGY IMPROVEMENTS
Our C-library has increased the efficiency and reliability of file transfer and encryption
Community members have requested an easier way to integrate with our Node.js core. As a result, the engineering team has largely been focused on migrating the Node.js core and CLI to a C-library called libstorj, with Node bindings called node-libstorj. We wrote libstorj as a replacement for the older JavaScript library with the purpose of interacting with the Storj network. We chose to build the core in C because of its portability, performance and efficiency. The bindings provide a portable way for other languages to interact with the network. Prior to the bindings, developers had trouble implementing a library that can reliably download files. Since developers invested significant time in this implementation, it detracted from the overall main goal of what they were trying to achieve: incorporate the Storj network in their application. Furthermore, by migrating to C, and re-architecting the code base, overall performance has greatly increased. This has directly resulted in an increased efficiency of the network transfer connection initiation time, the general response time for commands, how files are encrypted, and how larger files are transferred.
Earlier this year, we improved the network reliability for file downloads, including shard mirroring and reconstructing a file from its parts
A distributed storage network utilizes its Farmer community and storage availability. When Farmers go offline, storage space decreases, resulting in an unacceptably low probability of file retrieval. We’ve made great strides to improve retrieval reliability by creating multiple copies of files and implementing an algorithm, “Reed-Solomon”, that is able to reconstruct a file from just a fraction of its data shards.
Specifically, one of the issues with Clients receiving a file is that Farmers have had less than a 50 percent probability of being available to serve this data. The node´s (Farmer’s) ability to retrieve data was dependent on the size of the file being received: a larger file size coincided with a decreased probability of data retrieval. Data retrieval issues are directly related to a node’s performance and behavior. Nodes could go offline due to power failures, crashes, intermittent internet connections, and so on. The solution to these unfortunate circumstances was mirroring the node that’s in a failed state, and adding erasure encoding. When a node is inactive, other nodes in its vicinity will voluntarily hold pieces of data that were originally stored on the node that failed. Erasure encoding comes into play in the event that too many nodes that hold data or parity shards have gone offline. The file’s metadata is stored on the Bridge. The metadata contains the order and distribution of the shards stored at various node locations. To be able to reproduce the lost data, the metadata is requested from a Bridge. The missing shards can then be recreated from the remaining shards and parity shards.  Up to two-thirds of the data can be lost and the file can still be reconstructed 100 percent.  Parity shards are used to recalculate missing file shards and are stored on Farmer nodes along with file shards. This solution greatly increased the reliability of file downloads.
Bridges and Farmers will show an improvement in the scalability and reliability of file uploads
Like file downloads, file uploads rely on a pool of Farmers willing to accept a contract and hold the data for a specified time dictated by the contract. Originally, we implemented the Quasar/Kademlia structure to create a publish-subscribe model due to the promise of decentralized scalability. In this implementation, some Farmers are put at a disadvantage because other Farmers stay online but fail to propagate messages to their neighbors. These issues, along with timeouts, created an opportunity to mature from this model and create a replacement detailed in SIP6.
Quasar describes an event routing infrastructure for performing a publish-subscribe system on a structured peer-to-peer overlay network. However, the Quasar model is completely separate from the contract itself. Kademlia describes how a node is mapped in the network and where its neighbors are in relation to it. In this implementation, a Bridge advertises data that needs to be stored. Farmers (nodes) listen to the data and choose to subscribe to the advertisement. A Bridge sends a ‘publish’ message containing a contract to the network of subscribing nodes. The nodes review the contract and choose to accept or decline it. If a node accepts the contract, it sends an ‘offer’ message to the Bridge. If the Bridge accepts the ‘offer’ message, it sends a ‘consignment’ message to the node. The Bridge then receives a token from that node to upload data to it.
While this implementation works, with time, we found it to be unreliable. Community issues were also raised that confirmed the possibility of oversights in the design. In the described setup, a Bridge would wait for a certain amount of time to get a response from different nodes to see if any are interested in a contract. Nodes organized via the Kademlia setup relay this information to other nodes in their vicinity. However, not all nodes ideally performed this task. Timeouts increased due to some nodes having bad connections, refusing to relay the data to other nodes they are connected to, and so on. If a node is the last link in the sequence, it most likely will be delayed in sending an ‘offer’ message to the Bridge.  This puts some nodes on the network at an unfair disadvantage and creates a setback for the network. We invested considerable engineering efforts to resolve this issue by creating SIP6.
The SIP6 implementation provides a different strategy of how a Bridge communicates to a Farmer. It facilitates direct communication between a Bridge and a Farmer where the Bridge will directly contact a Farmer based on qualitative data. Unlike the first solution described, Bridges are aware of Farmers in its network and their space availability information for holding data.  When a Bridge asks a group of nodes to store data, a node has an option to accept or decline it. This communication is immediate and does not rely on relaying messages between nodes.
We are currently working on deploying these changes.  For more background information, please check out Problems with Quasar based publish-subscribe systems in peer-to-peer storage networks authored by one of our engineers.
A status page informs the community of any incidents
We feel it’s crucial that the Storj community is aware of incidents when they happen. They should also know why they have happened, and how they were resolved. We’ve created a status page to enhance the community experience and provide updates around incidents that occur. The status page is our commitment to reinforce confidence in the product and provide an even greater level of transparency to the community.
STORJ NOW
The Bridge’s GUI is now more informative
The Bridge’s GUI is a key tool that enables users to simplify user account information on the Storj network by providing detailed information and a refined experience. The team is currently working on improving the experience and capabilities within the GUI, and updates will be rolled out in the coming months.
The updates will be centered on insights and payment. The improved GUI will add more useful features for Renters to work with their Storj account and files, like the ability to monitor data usage. There will now also be more insights into file storage usage statistics, which will replace the bucket tab on the current GUI.
The updated GUI will also deliver an improved experience around billing and payments with monthly invoices, clearer data about how your bill was calculated, and add more types of payment methods. Renters should see an improvement in how they can pay for storage on the network including STORJ tokens, Bitcoin, Ethereum and credit card payment options.
Front-end user experience will be enhanced
For the initial deployments around the Storj platform, we focused engineering efforts on what made the network better - the security, encryption, performance, and scalability. Largely, we’ve been concentrating on the backend. This leaves work to be done on how users and developers experience the overall product. We recognize that if Storj is going to continue to be successful, we need to have the best, most intuitive experience in the industry. We will be dedicating efforts to making that possible. Some initial changes to look forward to will be focused on how Farmers and developers use and interact with Storj.
STORJ FORWARD
Documentation will be more substantial to help onboard users to the network
Product improvements you can expect to be implemented by December 2017 include crisper documentation. The goal of documentation is to have Farmers, developers, and everyone else onboard to the Storj network at a faster and easier pace. We will provide substantial resources such as detailed getting-started guides, screencasts, projects, and code snippets to enable the community to build and use the Storj platform. You should start to see improvements of how documentation is constructed and organized by the end of this year. Through 2018, you should see even bigger improvements. User-friendly software and documentation are one of our main priorities and will be an ongoing project late this year and into next year.
Part of our initiative with documentation is to also update the Storj GitHub repositories. We will be removing unnecessary files and repositories. Furthermore, we will adopt a consistent naming convention. These changes should help developers intuitively search through the Storj repos.
Ethereum integration
Finally, we will internally begin integrating with the Ethereum network for Farmer payments and other use cases. Some of the issues raised within the community, such as the monthly Farmer payouts, can be improved through this integration. This will enable Storj to potentially pay farmers in real time for the data contracts they are fulfilling.  Ethereum smart contracts will also enable new Bridge operators to have a requirement to lock up STORJ tokens so they are there to be distributed to farmers at payout time.
STORJ COMMUNITY
Community will have frequent company updates
Moving forward, watch for regular updates from the Storj Labs team. Storj Bytes will be a quarterly release that details updates on company direction and product improvements. Following the release of the newsletter, will be a townhall meeting with live Q&A sessions in an open forum.
You can also expect frequent new posts on our Storj blog. Here, we will continue to share detailed accounts about our engineering team developments, insights on the industry, and so much more. Finally, we hold weekly developer meetings for discussion of ongoing projects on wednesdays at 11am EDT in the #dev channel of our rocketchat.
Our goal is to be as transparent as possible as we continue to work together to strengthen and drive network adoption.
Community members will have perks Storj deeply values its community members.  To show our appreciation to you, we will be developing a bounty program for those of you who are active and/or contribute to the community. You should see the bounty program roll out within the coming month. Also, we will be planning out contests, hackathons, and the likes where community members can participate and win prizes. Stay tuned - you should see announcements regarding this very soon.
Building the Storj community through Partnerships
An important part of growing our community is leveraging partnerships to expand the Storj ecosystem. Through integrations with our partners, we can accelerate adoption of the platform. One of these partners is FileZilla. FileZilla is helping us by providing a GUI experience with data management and file transfer on the Storj network. Watch for further updates regarding this partner and future partnerships. Our partner ecosystem continues to grow stronger every day and as it does, it strengthens the Storj community and network. If you have questions about partnerships, please reach out to [email protected] .
Growing the Storj team
With our token sale completed, the Storj Labs team has the resources to accelerate product and technology development as we enter the next iteration of our product evolution. We are searching for smart individuals who are passionate about decentralization, blockchain and free and open-source software. Open positions include roles on our products, design, marketing and operations teams. To see the positions available, please visit the Storj Labs Careers page.
We’ve already hired several talented team members.  James is our developer; Nadine is our developer evangelist; Garrett is our junior data analyst; Dan is our head of PR; and John is our head of customer success. These team members will support the development of the Storj platform as well as our community and partner ecosystems. Check out our team page to see the new members.
Lastly, we want to share that Tome Boshevski has resigned from the company. On behalf of the entire team at Storj Labs, we thank Tome for his contributions as Chief Design Officer. His state-of-the-art design has helped us stand out within the community and we wish him the best in his future endeavors. Our team is excited for the opportunities on the horizon! We couldn’t be more grateful to the community leaders and members who make up so much of what Storj Labs is. As we move forward, we want to assure you that we are prioritizing product features and improvements based on your feedback. As this community continues to grow, we are excited to work together on our next phase of development of blockchain-based decentralized storage.
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engrfahadblr · 4 years
Text
Study Plan | Study Plan Template | Study Plan Sample | Study Plan Example
https://www.chinesescholarshipcouncil.com/?p=553&wpwautoposter=1587881506 Study Plan | Study Plan Template | Study Plan Sample | Study Plan Example Academic Background: I have completed my undergraduate studies in Electrical engineering from “ABCDUniversity of Engineering and Technology”, Pakistan, in March 2020, with a CGPA of 3.86 out of 4.00. I was an active somehow indulgent student among others during my undergraduate studies, very often involved in many curricular and co-curricular activities. In fact, I was up to the mark and honored in the top 1’slist of 120 students in my undergraduate class. If observed by the meritorious efforts I remain very competent and I have passed all entrance tests conducted by the academic institution of my education with high achievements and secured overall 4th place in the whole district. I did my final year thesis project on “Design, development, and fabrication of under/over voltage relay using static devices” with the group of five members in which I was made the Group Leader. The fabricated relay can be used for the automatic protection of household appliances and power system against voltage related problems. In this project, I learned and researched automated control and protection using Circuit Breakers and Relays along with other high-speed automatic control and protecting equipment’s involved in automation of the modern systems. While working on this project I found strong motivation in myself towards graduate study and research in the area of power system automation. At present, I am working as a Maintenance Engineer in Dawlance Group of Companies(the leading household appliances company in Pakistan); my job’s major responsibilities include; Maintenance and Automation of industry’s power system and machines along with the planning and the proper allocation of available resources to achieve the smooth and efficient operation of the plant by conducting routine and reactive preventive maintenance activities. Here, inDawlance, I have learned, researched and practically implemented the applications of electrical automation engineering in manufacturing process along with the extensive knowledge of Electrical automation devices like digital relays, vacuum and oil circuit breakers, Programmable logic controllers, Programmable automation controllers, Human Machine Interface and instrumentation devices. Furthermore, I Led the project “Energy saving by the optimization of electric motor usage” with annual savings of 1.2 Million PKR by conducting efficiency analysis, Right-sizing of installed motors, formulating the saving calculations and obtaining USAID OFFER by negotiations with vendors and USAID audit authorities. Also because of ardent interest and motivation towards power system automation, I have selected for 16 weeks internship in National Transmission & DispatchCompany; the sole electric power transmission company of Pakistan. Where I gained quality level knowledge and working experience of Grid SystemOperations (GSO), Protection and Instrumentation (P & I), SCADA, Metering and Testing (M & T). Along with these technical aspects I also earned practical knowledge about transmission system planning including Power Flow Studies, Reactive power compensation studies, Reliability, and Stability Analysis with respect to the interconnection of distributed generation with the transmission system. My work at NTDC was highly praised and I was awarded the certificate of appreciation by the senior management. My Personality: By fact, I am the socially active person with friendly nature, a good communicator indeed who is blessed with many friends. I keep a keen view of the reality of life thus approach people with positive mind and attitude and always prove to be helpful with honest efforts and true dedication. Besides that, I always feel very joyous and fortunate to meet and greet people belonging to different backgrounds and cultures. As such meetings are always important because they proved to be beneficial in future also it makes things easy to cope whether one works or studies in his own country or outside the country. Study Plan in China:I would like to apply for the Master’s Degree in Electrical Power system and its automation in China because of my current industrial job experience, past internship and my final year project I come to know the vast practical applications of the automation engineering, this caught my attention and created a thirst of knowledge in me to study my chosen course. My motto is to work in an international field related to Electrical Engineering. Therefore, I would like to gain deeper theoretical and practical knowledge in starting and managing most innovative projects. During my studies, with great hidden abilities in myself I will try to come up with the best of everything; to accompany the professors and university colleagues in carrying out research and exploring for immense exciting industrial mysteries in the field of power system Automation. After completion of my master’s studies, I hope to be able to take part in maximizing my country’s research technology in such fields to benefit its economy and enhance the living standards of my compatriots. I believe that this Masters Program will provide me with the chance to get to know with Electrical systems and affiliates me dedicatedly to the industries, which are living examples of the art of Electrical and automation engineering. I hope that I can gain more experience in dealing with situations, peoples, systems, and demands which will be of a great help in my future career. Reasons to study in China: Now the question arises, “Why China?” Reading the books, watching the news, analyzing and observing the people of China, I am really impressed by the way these individuals have proved themselves to be dedicated to their work and with true efforts they have set China as a successful example for other third world or developed countries. The fast-growing economy, technological advancement and the global ranking education institutes of China with high reputation makes a great aspiration to the students and professionals for the better career perspectives. Thus such kind of positivity has boosted my confidence further and I am highly satisfied with the decision I have taken. Moreover, China’s diverse cultural norms and values, the famous gentle hospitality of its people and Pakistan-China all weather friendly relations since past to promote bilateral trade, acceptance and peace to both sides in great clarity make me feel China as my second homeland; also my family fully supports my choice for China being my preference for graduate studies. All these reasons put together to make China an ideal place for me to do my Masters degree. Concluding it, with high hopes I believe this application will receive your favorable consideration and I will be happy to provide any additional information you may need. I look forward to receiving your reply.
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engrfahadblr · 4 years
Text
Study Plan | Study Plan Template | Study Plan Sample | Study Plan Example
https://www.chinesescholarshipcouncil.com/?p=553&wpwautoposter=1587805024 Study Plan | Study Plan Template | Study Plan Sample | Study Plan Example Academic Background: I have completed my undergraduate studies in Electrical engineering from “ABCDUniversity of Engineering and Technology”, Pakistan, in March 2020, with a CGPA of 3.86 out of 4.00. I was an active somehow indulgent student among others during my undergraduate studies, very often involved in many curricular and co-curricular activities. In fact, I was up to the mark and honored in the top 1’slist of 120 students in my undergraduate class. If observed by the meritorious efforts I remain very competent and I have passed all entrance tests conducted by the academic institution of my education with high achievements and secured overall 4th place in the whole district. I did my final year thesis project on “Design, development, and fabrication of under/over voltage relay using static devices” with the group of five members in which I was made the Group Leader. The fabricated relay can be used for the automatic protection of household appliances and power system against voltage related problems. In this project, I learned and researched automated control and protection using Circuit Breakers and Relays along with other high-speed automatic control and protecting equipment’s involved in automation of the modern systems. While working on this project I found strong motivation in myself towards graduate study and research in the area of power system automation. At present, I am working as a Maintenance Engineer in Dawlance Group of Companies(the leading household appliances company in Pakistan); my job’s major responsibilities include; Maintenance and Automation of industry’s power system and machines along with the planning and the proper allocation of available resources to achieve the smooth and efficient operation of the plant by conducting routine and reactive preventive maintenance activities. Here, inDawlance, I have learned, researched and practically implemented the applications of electrical automation engineering in manufacturing process along with the extensive knowledge of Electrical automation devices like digital relays, vacuum and oil circuit breakers, Programmable logic controllers, Programmable automation controllers, Human Machine Interface and instrumentation devices. Furthermore, I Led the project “Energy saving by the optimization of electric motor usage” with annual savings of 1.2 Million PKR by conducting efficiency analysis, Right-sizing of installed motors, formulating the saving calculations and obtaining USAID OFFER by negotiations with vendors and USAID audit authorities. Also because of ardent interest and motivation towards power system automation, I have selected for 16 weeks internship in National Transmission & DispatchCompany; the sole electric power transmission company of Pakistan. Where I gained quality level knowledge and working experience of Grid SystemOperations (GSO), Protection and Instrumentation (P & I), SCADA, Metering and Testing (M & T). Along with these technical aspects I also earned practical knowledge about transmission system planning including Power Flow Studies, Reactive power compensation studies, Reliability, and Stability Analysis with respect to the interconnection of distributed generation with the transmission system. My work at NTDC was highly praised and I was awarded the certificate of appreciation by the senior management. My Personality: By fact, I am the socially active person with friendly nature, a good communicator indeed who is blessed with many friends. I keep a keen view of the reality of life thus approach people with positive mind and attitude and always prove to be helpful with honest efforts and true dedication. Besides that, I always feel very joyous and fortunate to meet and greet people belonging to different backgrounds and cultures. As such meetings are always important because they proved to be beneficial in future also it makes things easy to cope whether one works or studies in his own country or outside the country. Study Plan in China:I would like to apply for the Master’s Degree in Electrical Power system and its automation in China because of my current industrial job experience, past internship and my final year project I come to know the vast practical applications of the automation engineering, this caught my attention and created a thirst of knowledge in me to study my chosen course. My motto is to work in an international field related to Electrical Engineering. Therefore, I would like to gain deeper theoretical and practical knowledge in starting and managing most innovative projects. During my studies, with great hidden abilities in myself I will try to come up with the best of everything; to accompany the professors and university colleagues in carrying out research and exploring for immense exciting industrial mysteries in the field of power system Automation. After completion of my master’s studies, I hope to be able to take part in maximizing my country’s research technology in such fields to benefit its economy and enhance the living standards of my compatriots. I believe that this Masters Program will provide me with the chance to get to know with Electrical systems and affiliates me dedicatedly to the industries, which are living examples of the art of Electrical and automation engineering. I hope that I can gain more experience in dealing with situations, peoples, systems, and demands which will be of a great help in my future career. Reasons to study in China: Now the question arises, “Why China?” Reading the books, watching the news, analyzing and observing the people of China, I am really impressed by the way these individuals have proved themselves to be dedicated to their work and with true efforts they have set China as a successful example for other third world or developed countries. The fast-growing economy, technological advancement and the global ranking education institutes of China with high reputation makes a great aspiration to the students and professionals for the better career perspectives. Thus such kind of positivity has boosted my confidence further and I am highly satisfied with the decision I have taken. Moreover, China’s diverse cultural norms and values, the famous gentle hospitality of its people and Pakistan-China all weather friendly relations since past to promote bilateral trade, acceptance and peace to both sides in great clarity make me feel China as my second homeland; also my family fully supports my choice for China being my preference for graduate studies. All these reasons put together to make China an ideal place for me to do my Masters degree. Concluding it, with high hopes I believe this application will receive your favorable consideration and I will be happy to provide any additional information you may need. I look forward to receiving your reply.
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