A fault-tolerant modulation method to counteract the double open-switch fault in matrix converter drive systems without redundant power devices

Der-fa Chen, Khiem Nguyen-Duy, Tian‐Hua Liu, M. Andersen
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引用次数: 6

Abstract

This paper studies the double open-switch fault issue occurring within the conventional matrix converter driving a three-phase permanent-magnet synchronous motor system and proposes a fault-tolerant solution by introducing a revised modulation strategy. In this switching strategy, the rectifier-stage modulation is adjusted based on the knowledge of the switching logics of the inverter-stage and the operating input voltage sectors. However, the proposed fault-tolerant method does not rely on the assist of any redundant power devices or any reconfiguration of the matrix converter circuit by means of using redundant physical connections. It is shown that different locations of the double open switch affect the availability of the revised modulation. The steady state absolute speed error achieved with the proposed method is 4% of the nominal speed. Experimental results are performed to demonstrate the efficacy of the proposed methods.
无冗余功率器件的矩阵变换器驱动系统双开开关故障容错调制方法
本文研究了传统矩阵变换器驱动三相永磁同步电机系统中出现的双开路故障问题,并通过引入修正的调制策略提出了一种容错解决方案。在这种开关策略中,整流级调制是基于逆变级和工作输入电压扇区的开关逻辑知识来调整的。然而,所提出的容错方法不依赖于任何冗余电源器件的辅助,也不依赖于通过使用冗余物理连接对矩阵变换器电路进行任何重新配置。结果表明,双开路开关位置的不同会影响修正调制的有效性。该方法得到的稳态绝对转速误差为公称转速的4%。实验结果验证了所提方法的有效性。
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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