Frequency control of energy storage system based on hierarchical cluster structure

Sang-Ji Lee, Jin-Young Choi, Dongjun Won, In-Sun Choi, Geon-Ho An, Yeong-Jun Choi
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引用次数: 2

Abstract

Deviation of power frequency can greatly impact power system reliability, power quality and economic efficiency. This paper proposes the frequency control of energy storage system based on hierarchical cluster structure. A central agent named by power management system (PMS) contracts with utility for providing the frequency regulation. The agent also manages the whole cluster structure and balances the energy of each storage device. Several local sub-agents named by the energy storage system controllers (ESSC) intermediate between the power management system and the subordinate energy storage devices. The sub-agents perform the frequency response control by P-f droop, and set the power reference to the each energy storage device. Through the demonstration test, response time and ramp rate of the proposed structure and algorithms are calculated and performance of this system is confirmed.
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基于分层簇结构的储能系统频率控制
工频偏差严重影响电力系统的可靠性、电能质量和经济效益。提出了一种基于分层簇结构的储能系统频率控制方法。一个由电力管理系统(PMS)命名的中央代理与公用事业公司签订合同,提供频率调节。agent还管理整个集群结构,平衡各个存储设备的能量。由储能系统控制器(ESSC)命名的几个本地子代理介于电源管理系统和下级储能设备之间。子agent通过P-f下垂进行频率响应控制,并设置各储能设备的功率参考。通过演示测试,计算了所提出的结构和算法的响应时间和斜坡率,并验证了系统的性能。
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