Recently, the world's largest capacity grid type energy storage empirical platform, Far East Energy Storage, passed the full scenario test of China Electric Power Research Institute in one go, and is also the world's first grid type energy storage to pass the full scenario test. Its performance in various tests has been excellent, reaching the international leading level.
The Far East's largest capacity grid based energy storage empirical platform is located in the Zero Carbon Industrial Park in Ordos, Inner Mongolia. Its main body is the Far East's 5.5MW/14MWh global largest single machine capacity grid based energy storage. The actual testing involves 8 major technical scenarios, covering the entire grid construction scenario, with a total of nearly a thousand performance tests. It has verified cutting-edge technologies such as weak grid voltage frequency support, black start, off grid operation, seamless switching with grid/grid construction, continuous high/low voltage fault ride through, inertia support, damping control, and wideband oscillation suppression on site.
Compared to industry wide grid building solutions that mainly focus on component or individual machine levels and can only target specific single scenarios, Far East chooses to provide a "1+4" grid building full stack solution for the industry from the perspective of a new power system. It can also simulate and implement strategies based on different regional power grids.
'1' refers to a system simulation design platform, which is a full time scale electrical and mechanical simulation platform that can accurately define equipment characteristics and design and develop the best network configuration products based on the application scenarios, development stages, and scale structure of new power systems. '4' refers to four types of network building products, covering four levels: components, complete machines, stations, and systems.
The full scenario testing of the Yuanjing Ordos empirical platform's networked energy storage has been successfully completed, which not only verifies the high-performance performance and full scenario adaptability of the Yuanjing networked energy storage at the component and whole machine levels, but also achieves significant technological breakthroughs at the site and system levels.
At the site level, the Far East Grid type energy storage system can achieve the synchronous machine like characteristics of the energy storage site through a virtual synchronous site control system, providing large capacity voltage source support for the stability construction of the new power system; At the system level, Farview has developed a coordinated control system for high proportion new energy and pure new energy power systems, which can achieve safe and stable control of weak power grids and even off grid systems, seamless switching between grid and off grid, and black start of wind solar energy storage.
For overseas markets, the Far East Network Energy Storage Empirical Platform has also passed rigorous British standard testing. In August of this year, the empirical platform passed the network type verification by authoritative institutions in the UK. Based on the requirements of the UK national standard for network construction, a total of 200+performance tests were conducted, including frequency regulation, voltage regulation, inertia, high and low voltage ride through, and grid adaptability, all of which passed at once.
As a leading global energy storage system supplier, Far East Energy Storage uses full stack technology to create high safety and high-performance energy storage systems, continuously promoting innovation in intelligent trading and network construction technology, realizing the coupling of energy storage with the electricity market and power system, and assisting in the construction of new power systems and new energy systems.(This article is from the official website of Jian Dao www.seetao.com. Reproduction without permission is prohibited, otherwise it will be prosecuted. Please indicate Jian Dao website+original link when reprinting.) Jian Dao website strategy column editor/Li Xiu'e
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