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Coordinated Control of Distributed Energy-Storage Systems for Voltage Regulation in Distribution Networks

机译:配电网中用于电压调节的分布式储能系统的协调控制

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In this paper, distributed energy-storage systems (ESSs) are proposed to solve the voltage rise/drop issues in low-voltage (LV) distribution networks with a high penetration of rooftop photovoltaics (PVs). During the peak PV generation period, the voltages are mitigated by charging the ESSs, and the stored energy is discharged for voltage support during the peak load period. The impact of storage devices integrated with the PV source on feeder voltages is investigated in detail. A coordinated control method, which includes distributed and localized controls, is proposed for distributed ESSs. The distributed control using the consensus algorithm regulates the feeder voltages within the required limits, while the localized control regulates the state of charge (SoC) of each ESS within the desired SoC range. The entire control structure ensures voltage regulation while effectively utilizing storage capacity under various operation conditions. The proposed control method is evaluated in LV distribution networks, and the simulation results validate the effectiveness of this method.
机译:在本文中,提出了分布式储能系统(ESS),以解决屋顶光伏(PV)具有高渗透率的低压(LV)配电网络中的电压上升/下降问题。在峰值PV生成期间,通过对ESS充电来减轻电压,并且在峰值负载期间将存储的能量放电以支持电压。详细研究了与光伏电源集成的存储设备对馈线电压的影响。针对分布式ESS,提出了一种包含分布式和局部控制的协调控制方法。使用共识算法的分布式控制将馈线电压调节到所需的限制内,而局部控制将每个ESS的充电状态(SoC)调节在所需的SoC范围内。整个控制结构可确保电压调节,同时有效利用各种操作条件下的存储容量。在低压配电网中对所提出的控制方法进行了评估,仿真结果验证了该方法的有效性。

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