Modulation Strategy of Z-source Inverter Based on Asymmetric Shoot-through Vector Insertion Method

Yizhan Jiang, Qiang Wang, Jingwei Zhang, Fengyou He, Weifeng Zhang
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Abstract

The traditional Z-source inverter modulation strategy is usually symmetric. Symmetric modulation has a good effect in suppressing the second harmonic but also limits the possibility of modulation sequences. In this paper, an asymmetric modulation strategy is proposed, which uses the shoot-through vector only once in a switching period to maximize the optimization of the switching losses caused by the shoot-through vector. The current passing through the switching devices of the Z-source inverter is analyzed, and it is determined that the minimum number of shoot-through vectors in a switching period can achieve the lowest switching loss. On this basis, asymmetric switching sequences of several common modulation strategies are proposed. Finally, the effectiveness of the proposed modulation method is verified by Matlab/SIMULINK combined with PLECS simulation.
基于非对称透射矢量插入法的z源逆变器调制策略
传统的z源逆变器调制策略通常是对称的。对称调制在抑制二次谐波方面有很好的效果,但也限制了调制序列的可能性。本文提出了一种非对称调制策略,该策略在一个切换周期内只使用一次透射矢量,以最大限度地优化透射矢量引起的切换损耗。对通过z源逆变器开关器件的电流进行了分析,确定了在一个开关周期内,射通矢量的数量越少,开关损耗越小。在此基础上,提出了几种常用调制策略的非对称开关序列。最后,通过Matlab/SIMULINK结合PLECS仿真验证了所提调制方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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