Modulated model predictive current control of an indirect matrix converter with active damping

Z. Di, M. Rivera, Hanbing Dan, L. Tarisciotti, Kehan Zhang, Demin Xu, P. Wheeler
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引用次数: 5

Abstract

A modulated model predictive control (M2PC) scheme for an indirect matrix converter is proposed in this paper, including an active damping method to mitigate the input filter resonance. The control strategy allows the instantaneous power control and the output current control at the same time, operating at a fixed frequency. An optimal switching pattern is used to emulate the desired waveform quality features of space vector modulation and achieve zero-current switching operations. The active damping technique emulates a virtual resistor which damps the filter resonance. Simulation results present a good tracking to the output-current references, unity input displacement power factor, the low input-current distortions and a reduced common-mode voltage (CMV).
带有主动阻尼的间接矩阵变换器的调制模型预测电流控制
本文提出了一种间接矩阵变换器的调制模型预测控制(M2PC)方案,其中包括一种主动阻尼方法来减轻输入滤波器的谐振。该控制策略允许瞬时功率控制和输出电流控制同时进行,以固定频率工作。采用最佳开关模式来模拟空间矢量调制所需的波形质量特征,实现零电流开关操作。主动阻尼技术模拟了一个虚拟电阻来抑制滤波器的谐振。仿真结果表明,该方法具有良好的输出电流参考跟踪性能,输入位移功率因数统一,输入电流畸变小,共模电压(CMV)降低等优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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