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Impedance Matching Based Control for the Resonance Damping of Microgrids with Multiple Grid Connected Converters

机译:基于阻抗匹配的多电网并网变流器微电网谐振阻尼控制

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摘要

This paper presents an impedance-matching-based control scheme for the harmonic resonance damping of multiple grid-connected-converters (GCCs) with LCL filters. As indicated in this paper, harmonic resonance occurs if a GCC possesses an output impedance that is not matched with the rest of the network in some specific frequency bands. It is also revealed that the resonance frequency is associated with the number of GCCs, the grid impedance and even the capacitive loads. By controlling the grid-side current instead of the converter-side current, the critical LCL filter is restricted as an internal component. Thus, the closed-loop output impedance of the GCC within the filter can be configured. The proposed scheme actively regulates the output impedance of the GCC to match the impedance of the external network, based on the detected resonance frequency. As a result, the resonance risk of multiple GCCs can be avoided, which is beneficial for the plug-and-play property of the GCCs in microgrids. Simulation and experimental results validate the effectiveness of the proposed method.
机译:本文提出了一种基于阻抗匹配的控制方案,用于带有LCL滤波器的多个并网转换器(GCC)的谐波谐振阻尼。如本文所述,如果GCC的输出阻抗在某些特定频段与网络的其余部分不匹配,则会发生谐波谐振。还表明,谐振频率与GCC的数量,电网阻抗甚至电容性负载相关。通过控制电网侧电流而不是转换器侧电流,可以将关键LCL滤波器限制为内部组件。因此,可以配置滤波器内GCC的闭环输出阻抗。所提出的方案基于检测到的谐振频率来主动调节GCC的输出阻抗以匹配外部网络的阻抗。结果,可以避免多个GCC的共振风险,这对于微电网中的GCC的即插即用特性是有利的。仿真和实验结果验证了该方法的有效性。

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