不平衡滤波电感并联三相维也纳整流器的循环电流抑制

Szu-Chi Peng, Zong-Lin Li, Surya Chandra Gulipalli, C. Chu
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引用次数: 1

摘要

三相维也纳整流器并联已被广泛用于提高充电站的额定功率。然而,并联操作将引入零序循环电流(ZSCC)循环路径。这个问题将变得更加严重,特别是这些整流器工作在交错模式与不平衡滤波器电感。为了减轻这些循环电流,提出了一种综合控制方案,通过内环控制中的PIR控制来减轻ZSCC的低频分量,通过不连续PWM来减轻ZSCC的高频分量。通过数值仿真和硬件实验验证了所提控制方案的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mitigating Circulating Currents of Parallel Three-Phase Vienna Rectifiers with Unbalanced Filter Inductors
Parallel connections of three-phase Vienna rectifiers have been widely utilized to increase power ratings of charging stations. However, paralleled operations will introduce a path for the zero sequence circulating current (ZSCC) circulations. This problem will become worse especially for these rectifiers are operated under interleaved modes with unbalanced filter inductors. To mitigate these circulating currents, an integrated control scheme is proposed by mitigating the low frequency component of the ZSCC by PIR control in the inner-loop control and the high frequency component of the ZSCC by discontinuous PWM. Both numerical simulations and hardware experiments are performed to validate the effectiveness of the proposed control scheme.
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