Utilization of Electrochemical Energy Storage System with External Characteristics of Voltage Source for Independent Voltage Support in Power Systems

Shang Zhang, Xiaohui Qin, Jian Zhang, Chunmeng Chen
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Abstract

The increasing penetration of renewable energies poses a threat to the voltage stability of power system. Energy storage technology can be utilized for voltage support in the power system with high proportion of renewables. The external characteristic of traditional energy storage system (ESS) performs as a current source, which only passively responds to the variations in power system after disturbance. In this paper, the model of electrochemical energy storage system with external characteristics of the voltage source is proposed. The control strategies of ESS are established based on the virtual synchronous generator (VSG) algorithm, in order to emulate the electromotive force and inertia of traditional synchronous generator. Application results of a practical power system in Northwest China show that the proposed model can provide independently voltage support, and effectively improve the consumption and delivery capacity of renewable energies.
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具有电压源外特性的电化学储能系统在电力系统独立电压支撑中的应用
可再生能源的日益普及对电力系统的电压稳定性构成了威胁。储能技术可用于可再生能源比重高的电力系统的电压支撑。传统储能系统的外部特性作为电流源,在扰动后只能被动响应电力系统的变化。本文提出了具有电压源外部特性的电化学储能系统模型。为了模拟传统同步发电机的电动势和惯性,建立了基于虚拟同步发电机(VSG)算法的ESS控制策略。西北地区某实际电力系统的应用结果表明,该模型能够提供独立的电压支持,有效提高可再生能源的消纳和输送能力。
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