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首页> 外文期刊>IEEE Transactions on Energy Conversion >An Approach to Fault-Tolerant Three-Phase Matrix Converter Drives
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An Approach to Fault-Tolerant Three-Phase Matrix Converter Drives

机译:容错三相矩阵变频器的一种方法

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摘要

Despite numerous research efforts in matrix converter-based drives, a study of fault-tolerant topology and control strategy for a matrix converter drive has not been presented in the literature. This paper proposes a matrix converter structure and a modulation technique for the remedial operation in case of opened switch faults and single-phase open circuits. The fault compensation is achieved by reconfiguring the matrix converter topology with the help of a connecting device. Based on the redefined converter structure, a fault-tolerant modulation algorithm is developed to reshape output currents of two unfaulty phases for obtaining continuous operation. The proposed method allows improved system reliability and fault-tolerant capability with no backup leg and no parallel redundancy. Simulation and experimental results are shown to demonstrate the feasibility of the proposed fault-tolerant approach to the matrix converter drives.
机译:尽管在基于矩阵变换器的驱动器中进行了大量研究工作,但文献中尚未提出对矩阵变换器驱动器的容错拓扑和控制策略的研究。针对开关故障和单相开路的情况,本文提出了一种矩阵变换器的结构和调制技术,以进行补救操作。通过在连接设备的帮助下重新配置矩阵转换器拓扑,可以实现故障补偿。在重新定义的转换器结构的基础上,开发了一种容错调制算法,以对两个无故障相的输出电流进行整形以获得连续的运行。所提出的方法允许改进的系统可靠性和容错能力,而没有备用支路,也没有并行冗余。仿真和实验结果表明了所提出的矩阵转换器驱动器容错方法的可行性。

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