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Impedance based analysis and design of harmonic resonant controller for a wide range of grid impedance

机译:基于阻抗的谐波谐振控制器,用于各种电网阻抗的谐振谐振控制器

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This paper investigates the effect of grid impedance variation on harmonic resonant current controllers for grid-connected voltage source converters by means of impedance-based analysis. It reveals that the negative harmonic resistances tend to be derived from harmonic resonant controllers in the closed-loop output admittance of converter. Such negative resistances may interact with the grid impedance resulting in steady state error or unstable harmonic compensation. To deal with this problem, a design guideline for harmonic resonant controllers under a wide range of grid impedance is proposed, where the controller gain boundary region is derived based on the short circuit ratio. The nonlinear time domain simulations are presented to verify the theoretical analysis in the frequency domain, and the experimental results based on the analysis results are included.
机译:本文通过阻抗的分析研究了电网电压源转换器对谐波谐振电流控制器的电网阻抗变化的影响。它揭示了负谐波电阻倾向于在转换器的闭环输出导纳中源自谐振谐振控制器。这种负电阻可以与网格阻抗相互作用,导致稳态误差或不稳定的谐波补偿。为了处理这个问题,提出了在广泛的网格阻抗下的谐振谐振控制器的设计指南,其中基于短路比导地导出控制器增益边界区域。提出了非线性时域模拟以验证频域中的理论分析,包括基于分析结果的实验​​结果。

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