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Control of Parallel Three-Phase PWM Converters Under Generalized Unbalanced Operating Conditions

机译:广义不平衡工况下并联三相PWM转换器的控制

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摘要

This paper proposes a new control scheme for parallel three-phase pulse width modulation converters under generalized unbalanced operating conditions. An average model of the parallel system in positive-sequence synchronous reference frame is derived to analyze the influence of generalized unbalanced operating conditions in ac side. It is seen that the unbalance factors in filter inductance will not only give rise to negative-sequence circulating current, but also contribute to generating zero-sequence circulating current (ZSCC). The negative-sequence circulating current can be inhibited by suppressing the negative-sequence components in ac output currents of parallel modules with a proportional integral resonant (PIR) controller. An improved feed-forward strategy and a PIR controller for ZSCC control are proposed for unbalanced operating conditions. The disturbances in ZSCC caused by unbalance factors in filter inductance can be rejected with feed-forward strategy. Because the disturbance in ZSCC is the fluctuation in grid frequency which can be suppressed by a resonance controller, therefore, a PIR controller is adopted in ZSCC controller. The proposed scheme can effectively suppress the circulating currents between the parallel modules and as a result, the distortions in output currents can be greatly reduced. Experimental results confirm the performance and effectiveness of the proposed method.
机译:本文提出了一种在广义不平衡工况下并联三相脉冲宽度调制转换器的新控制方案。推导了正序同步参考系中并联系统的平均模型,以分析交流侧广义不平衡工况的影响。可以看出,滤波器电感中的不平衡因素不仅会产生负序循环电流,而且还会产生零序循环电流(ZSCC)。通过使用比例积分谐振(PIR)控制器抑制并联模块的交流输出电流中的负序分量,可以抑制负序循环电流。针对不平衡的工作条件,提出了一种改进的前馈策略和用于ZSCC控制的PIR控制器。由滤波器电感不平衡因素引起的ZSCC干扰可以通过前馈策略来消除。由于ZSCC的干扰是电网频率的波动,可以通过谐振控制器来抑制,因此在ZSCC控制器中采用了PIR控制器。所提出的方案可以有效地抑制并联模块之间的循环电流,结果,可以大大减小输出电流的失真。实验结果证实了该方法的性能和有效性。

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