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A SoC control strategy based on wireless droop control for energy storage systems in ac islanded microgrid

机译:基于无线下垂控制的ac孤岛微电网储能系统SoC控制策略

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Due to the fact that the line impedances in microgrid and initial value of State-of-Charge(SoC) are different, SoC of energy storage systems (ESS) in microgrid is unbalance and exists the phenomenon of overcharge and overdischarge of the ESS. At the same time, the conventional droop control used for balancing the output power of the inverters lead to voltage deviation in the ac island microgrid. In order to overcome these issues and prolong the service life of ESS, a wireless droop control strategy is presented in this paper. This method achieves SoC balancing by shifting droop characteristic curve according to SoC of each ESS. In order to prevent overcharge and overdischarge of ESS, ESS will operates in power control mode (PCM) when SoC reaches the maximum charge and the minimum discharge limit. A voltage compensation term is added to the proposed droop control method to restore the voltage deviation. Different cases are studied by simulation and experiment to validate the effectiveness of the proposed approach.
机译:由于微电网中的线路阻抗和充电状态(SoC)的初始值不同,因此微电网中的储能系统(ESS)的SoC不平衡,并存在ESS过度充电和过度放电的现象。同时,用于平衡逆变器输出功率的传统下垂控制会导致ac岛微电网中的电压偏差。为了克服这些问题并延长ESS的使用寿命,本文提出了一种无线下垂控制策略。该方法通过根据每个ESS的SoC移动下垂特性曲线来实现SoC平衡。为了防止ESS的过度充电和过度放电,当SoC达到最大充电和最小放电极限时,ESS将以功率控制模式(PCM)运行。电压补偿项被添加到所提出的下垂控制方法中以恢复电压偏差。通过仿真和实验研究了不同情况,以验证所提方法的有效性。

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