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Modeling and Analysis of Harmonic Stability in an AC Power-Electronics-Based Power System

机译:交流电力电子电力系统谐波稳定性的建模与分析

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This paper addresses the harmonic stability caused by the interactions among the wideband control of power converters and passive components in an ac power-electronics-based power system. The impedance-based analytical approach is employed and expanded to a meshed and balanced three-phase network which is dominated by multiple current- and voltage-controlled inverters with LCL- and LC-filters. A method of deriving the impedance ratios for the different inverters is proposed by means of the nodal admittance matrix. Thus, the contribution of each inverter to the harmonic stability of the power system can be readily predicted through Nyquist diagrams. Time-domain simulations and experimental tests on a three-inverter-based power system are presented. The results validate the effectiveness of the theoretical approach.
机译:本文讨论了基于交流电力电子的电力系统中功率转换器的宽带控制与无源组件之间的相互作用所引起的谐波稳定性。采用了基于阻抗的分析方法,并将其扩展到一个网状且平衡的三相网络,该网络由多个带有LCL和LC滤波器的电流和电压控制逆变器主导。提出了一种通过节点导纳矩阵推导不同逆变器阻抗比的方法。因此,可以通过奈奎斯特图容易地预测每个逆变器对电力系统谐波稳定性的贡献。介绍了基于三逆变器的电源系统的时域仿真和实验测试。结果验证了该理论方法的有效性。

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