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Virtual Synchronous Generator Strategy for VSC-MTDC and the Probabilistic Small Signal Stability Analysis

机译:用于VSC-MTDC的虚拟同步发生器策略和概率小信号稳定性分析

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In this paper, a new virtual synchronous generator (VSG) strategy based on the V 2 -P droop control strategy is proposed for the voltage source converter based multi-terminal high voltage direct current (VSC-MTDC) system. The VSG strategy enables the inverter stations to damp the power oscillation and provide frequency support for the AC system. Virtual inertia coefficient is obtained to couple the DC voltage and the angular frequency. To provide the oscillation damping and frequency support, the inverter stations could adjust the output power by the adjustment of the DC reference voltage. Due to the characteristic of the V 2 -P droop method, there is no requirement for the communication between inverter stations. The Monte Carlo method is used to test the probabilistic small signal stability of the VSG strategy. The performance of the proposed controller is demonstrated by a hybrid AC/DC system which is modeled in DIgSILENT/PowerFactory.
机译:本文针对基于电压源变换器的多端高压直流(VSC-MTDC)系统,提出了一种基于V 2 -P下降控制策略的新型虚拟同步发电机(VSG)策略。 VSG策略使逆变器站能够衰减功率振荡并为交流系统提供频率支持。获得虚拟惯性系数以耦合直流电压和角频率。为了提供振荡阻尼和频率支持,逆变器站可以通过调节直流参考电压来调节输出功率。由于V 2 -P下垂方法的特性,因此不需要逆变器站之间的通信。蒙特卡罗方法用于测试VSG策略的概率小信号稳定性。所提出的控制器的性能通过在DIgSILENT / PowerFactory中建模的AC / DC混合系统进行了演示。

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