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Analysis of voltage control interactions and dynamic voltage stability in multiple wind farms

机译:多个风电场的电压控制相互作用和动态电压稳定性分析

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Voltage controls in multiple wind farms which are located closely interact with each other due to the electrical connection. This paper poposes a small-signal model to reveal the mechanism of voltage control interactions. The significant influences of the interactions on dynamic voltage stability are carefully discussed. Negative damping component caused by interactions deteriorate dynamic voltage stability under weak grid conditions. The analysis shows that two factors, grid strength and control parameters, have great influence on the interactions. The system stability can be threatened when large-scale wind farms integrate into a weak grid and control parameters is set unproper for the system operation. Finally, time domain simulation results are presented to validate the phenomenon and the effects of the two facors.
机译:由于电气连接,位于多个风电场中的电压控件相互之间紧密相互作用。本文提出了一个小信号模型来揭示电压控制相互作用的机理。仔细讨论了相互作用对动态电压稳定性的重大影响。由相互作用引起的负阻尼分量会降低弱电网条件下的动态电压稳定性。分析表明,网格强度和控制参数这两个因素对相互作用有很大影响。当大型风电场整合到薄弱的电网中并且控制参数设置不适合系统运行时,可能会威胁到系统的稳定性。最后,给出了时域仿真结果,以验证两种facor的现象和影响。

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