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AC Network Response Behaviors to Time-Varying Amplitude-Frequency Internal Voltage of Voltage Source Converters

机译:交流网络对电压源转换器时变幅频内部电压的响应行为

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During an AC fault, voltage source converter (VSC) has a different excitation-response characteristic compared with the synchronous generator (SG). As a result, for power systems with a high penetration of VSC-based equipment, the network response behaviors are mainly determined by the VSCs' internal voltage whose amplitude and frequency are time-varying. However, the lumped parameter π-equivalent circuit model is established based on a sine steady-state signal. Thus, in order to analyze the network response behavior, an excitation-response relation model of AC network is proposed. Then, the response behaviors of node-voltage vectors are compared when using two different types line model in electromagnetic transient program (EMTP). Finally, the determinants of network response behaviors are analyzed. The conclusions of this paper indicate that the π-equivalent circuit model is improper and the distributed parameter line model is suggested to simulate the transient behaviors of a power system with high penetration of VSCs.
机译:在AC故障期间,与同步发电机(SG)相比,电压源转换器(VSC)具有不同的励磁响应特性。因此,对于基于VSC的设备具有较高渗透率的电力系统,网络响应行为主要由幅度和频率随时间变化的VSC的内部电压决定。但是,基于正弦稳态信号建立集总参数π等效电路模型。因此,为了分析网络响应行为,提出了一种交流网络的激励-响应关系模型。然后,比较了在电磁暂态程序(EMTP)中使用两种不同类型的线模型时节点电压矢量的响应行为。最后,分析了网络响应行为的决定因素。本文的结论表明,π等效电路模型是不正确的,建议使用分布参数线模型来模拟具有高VSC渗透率的电力系统的暂态行为。

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