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Research on Subsynchronous Oscillation of Photovoltaic and Battery Storage Systems Integrated to Weak Grid

机译:集成到弱电网的光伏电池存储系统的子同步振荡研究

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This paper investigates the subsynchronous oscillation of photovoltaic(PV) and battery storage systems integrated to weak grid. In order to analyze the subsynchronous oscillation of the systems, a small signal model of the PV and battery storage systems is established. Based on the model, the effects of control parameters of PV and battery storage systems on the sub-synchronous oscillation of the systems are investigated. Analysis results show that the subsynchronous oscillation are closely related with PV's DC voltage control(DVC) and battery storage system's PLL. It is found that with increase of PV DVC bandwidth, the subsynchronous oscillation frequency of the systems will increase first and then almost unchanged, which improves the stability of system. However, with increase of battery storage PLL bandwidth, the subsynchronous oscillation frequency first decreases and then increases, decreasing the stability of system. Finally, the time-domain model of PV and battery energy storage systems connected to the weak grid is built to verify the correctness of the analysis.
机译:本文研究了光伏(PV)和集成到弱网格的电池存储系统的子同步振荡。为了分析系统的子同步振荡,建立了PV和电池存储系统的小信号模型。基于该模型,研究了PV和电池存储系统控制参数对系统的副同步振荡的影响。分析结果表明,子同步振荡与PV的直流电压控制(DVC)和电池存储系统的PLL密切相关。结果发现,随着PV DVC带宽的增加,系统的子同步振荡频率将首先增加,然后几乎不变,这提高了系统的稳定性。然而,随着电池存储PLL带宽的增加,子同步振荡频率首先降低,然后增加,减小系统的稳定性。最后,建立了连接到弱电网的PV和电池能量存储系统的时域模型以验证分析的正确性。

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