A Zero-sequence Current Suppression strategy for Five-phase Open-end Winding PMSM with Vector Proportional Integral Controller

Chunyang Jiang, Hongchen Liu, Xinsheng Zhang, Youzheng Wang, Chaochao Li
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Abstract

Multiphase open-end winding permanent magnet synchronous motor (OEW-PMSM) has many advantages, such as high power density, reduced torque ripples and high reliability. However, the dual inverter system with common DC bus has a zero-sequence path and causes the zero-sequence circuiting current. The zero-sequence current (ZSC) produces system losses and torque ripples. In order to achieve a high performance of the motor, the model of a five-phase OEW-PMSM is built. The model contains the zero-sequence component, which does not exist in conventional PMSM model. Then a vector proportional integral controller is designed to suppress the ZSC in the system. The simulation and experiment results prove that the vector proportional integral controller has a good performance of suppressing the ZSC.
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基于矢量比例积分控制的五相开口绕组PMSM零序电流抑制策略
多相开放式绕组永磁同步电动机具有功率密度高、转矩波动小、可靠性高等优点。但是,采用普通直流母线的双逆变系统存在零序路径,产生零序回路电流。零序电流(ZSC)会产生系统损耗和转矩波动。为了实现电机的高性能,建立了五相OEW-PMSM的模型。该模型包含了传统永磁同步电机模型中不存在的零序分量。然后设计了一个矢量比例积分控制器来抑制系统中的ZSC。仿真和实验结果表明,矢量比例积分控制器具有良好的抑制ZSC的性能。
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8
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