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Verification of effectiveness of a matrix converter with boost-up AC chopper by using an IPM motor

机译:通过使用IPM电机验证矩阵转换器的有效性,通过IPM电机使用升压交流斩波器

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This paper describes the matrix converter that features boost-up functionality. The proposed circuit topology connects a V-connection AC chopper at the input side of the matrix converter to achieve the boost-up function. The matrix converter and the V-connection AC chopper are controlled independently, where a virtual indirect control method is applied to the matrix converter, and an open-loop control is applied to the V-connection AC chopper. However, the efficiency of the proposed circuit is low due to the extra loss from the V-connection AC chopper. In this paper, the efficiency of the proposed circuit and the conventional matrix converter is evaluated by using a 3.7kW IPM motor in the simulation and the experiment. The simulation results confirm that by implementing field-weakening control in the conventional matrix converter, the losses are lower than that of the proposed circuit topology, where the proposed circuit improves the efficiency by 12%. According to the experimental results, it is obtained that the proposed circuit can improve the efficiency of 13% in compare with the conventional matrix converter.
机译:本文介绍了具有促进功能的矩阵转换器。所提出的电路拓扑在矩阵转换器的输入侧连接V连接交流斩波器以实现升压功能。矩阵转换器和V相连的AC斩波器被独立地控制,其中虚拟间接控制方法应用于矩阵转换器,并将开环控制应用于V连接交流斩波器。然而,由于V连接交流斩波器的额外损失,所提出的电路的效率低。在本文中,所提出的电路的效率和常规的矩阵转换器,通过使用在模拟和实验一个3.7kW的IPM电动机评价。仿真结果证实,通过在传统的矩阵转换器中实现现场弱化控制,损耗低于所提出的电路拓扑的损耗,其中提出的电路将效率提高了12%。根据实验结果,获得了与传统矩阵转换器相比,所提出的电路可以提高13%的效率。

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