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Virtual RC Damping of LCL-Filtered Voltage Source Converters with Extended Selective Harmonic Compensation

机译:具有扩展选择性谐波补偿的虚拟RC阻尼或LCL滤波电压源转换器

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摘要

Active damping and harmonic compensation are two common challenges faced by LCL-filtered voltage source converters. To manage them holistically, this paper begins by proposing a virtual RC damper in parallel with the passive filter capacitor. The virtual damper is actively inserted by feeding back the passive capacitor current through a high-pass filter, which indirectly, furnishes two superior features. They are the mitigation of phase lag experienced by a conventional damper and the avoidance of instability caused by the negative resistance inserted unintentionally. Moreover, with the virtual RC damper, the frequency region, within which the harmonic compensation is effective, can be extended beyond the gain crossover frequency. This is of interest to some high-performance applications, but has presently not been achieved by existing schemes. Performance of the proposed scheme has been tested in the laboratory with results obtained for demonstrating stability and harmonic compensation.
机译:有源阻尼和谐波补偿是LCL滤波电压源转换器面临的两个常见挑战。为了全面地管理它们,本文首先提出了一个与无源滤波电容器并联的虚拟RC阻尼器。通过通过高通滤波器反馈无源电容器电流,可以有效地插入虚拟阻尼器,这间接地提供了两个优越的功能。它们是减轻传统阻尼器所经历的相位滞后,并避免了由于无意插入的负电阻引起的不稳定性。此外,使用虚拟RC阻尼器,谐波补偿有效的频率范围可以扩展到增益交叉频率之外。这是某些高性能应用程序感兴趣的,但是目前尚未通过现有方案实现。该方案的性能已在实验室进行了测试,并获得了证明稳定性和谐波补偿的结果。

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