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Simulation and application analysis of a hybrid energy storage station in a new power systemOACSTPCDEI

中文摘要

As the proportion of renewable energy infiltrating the power grid increases,suppressing its randomness and volatility,reducing its impact on the safe operation of the power grid,and improving the level of new energy consumption are increasingly important.For these purposes,energy storage stations(ESS)are receiving increasing attention.This article discusses the structure,working principle,and control methods of grid-following and grid-forming energy-storage converters,which are currently commonly used.A simulation analysis was conducted to investigate their dynamic response characteristics.The advantages and disadvantages of two types of energy storage power stations are discussed,and a configuration strategy for hybrid ESS is proposed.This paper presents research on and a simulation analysis of grid-forming and grid-following hybrid energy storage systems considering two types of energy storage according to different capacity scenarios.Finally,a comparative analysis between the systems is presented.A simulation model was established using PSD-BPA(Power System Department-Bonneville Power Administration)to analyze the impact of the capacity ratio of grid-following and grid-forming ESS on their dynamic response characteristics in a hybrid ESS.In addition,a development direction for future ESSs is indicated.

Tianyu Zhang;Xiangjun Li;Hanning Li;Hangyu Sun;Weisen Zhao

National Key Laboratory of Renewable Energy Grid-Integration China Electric Power Research Institute Beijing,100192,P.R.ChinaNational Key Laboratory of Renewable Energy Grid-Integration China Electric Power Research Institute Beijing,100192,P.R.ChinaNational Key Laboratory of Renewable Energy Grid-Integration China Electric Power Research Institute Beijing,100192,P.R.ChinaNational Key Laboratory of Renewable Energy Grid-Integration China Electric Power Research Institute Beijing,100192,P.R.ChinaNational Key Laboratory of Renewable Energy Grid-Integration China Electric Power Research Institute Beijing,100192,P.R.China

动力与电气工程

ESSGrid-formingGrid-followingSimulation modelingDynamic characteristic

《Global Energy Interconnection》 2024 (5)

P.553-562,10

supported by the National Key Research and Development Program of China(Gigawatt Hour Level Lithiumion Battery Energy Storage System Technology,NO.2021YFB2400100Integrated and Intelligent Management and Demonstration Application of Gigawatt Hour Level energy storage station,NO.2021YFB2400105).

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