A Remedial Method Based on Field-Oriented Control for Five-Phase PMSM Under Single-Phase Open-Circuit Fault

Jianhua Li, Bochao Du, Tianxu Zhao, Yuan Cheng, S. Cui
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引用次数: 2

Abstract

Field-oriented control (FOC) based on vector space decomposition (VSD) is a common method for the high-performance operation of five-phase motors. In this paper, a remedial method based on FOC for five-phase permanent magnet synchronous motor (FPMSM) with sinusoidal back electromotive force (EMF) is proposed to suppress the current distortion and torque ripple under single phase open-circuit fault (OCF). For FPMSM with sinusoidal back EMF, the circular trajectory of current in the stationary $\alpha-\beta$ frame can produce circular rotating magnetomotive force to output constant torque. After single phase OCF, the motor model based on VSD keeps unchanged because the prefault normal matrix is adopted in the decoupling transformation. However, the modulation voltages of the inverter are no longer equal to the phase voltages of the motor, resulting in current distortion and torque fluctuation. By analyzing the inverter model and motor model under single phase OCF, a remedial method is proposed, which the disturbances are suppressed by reconstructing the voltage transformation matrix and using voltage feedforward. Compared with conventional methods based on PR or double PI controllers, the structures of current controllers are no need to be changed, so this method has the advantages of simple application and avoiding complex parameter design. The simulation verifies the effectiveness of the proposed method.
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基于磁场定向控制的五相永磁同步电机单相开路故障修复方法
基于矢量空间分解(VSD)的场定向控制(FOC)是实现五相电机高性能运行的常用方法。针对具有正弦反电动势(EMF)的五相永磁同步电动机(FPMSM)在单相开路故障(OCF)下产生的电流畸变和转矩脉动,提出了一种基于FOC的修复方法。对于正弦波反电动势的FPMSM,电流在静止$\alpha-\beta$框架内的圆形轨迹可以产生圆形旋转磁动势,输出恒定转矩。在单相OCF后,由于解耦变换中采用了故障前正态矩阵,基于VSD的电机模型保持不变。然而,逆变器的调制电压不再等于电机的相电压,导致电流畸变和转矩波动。通过对单相OCF下逆变器模型和电机模型的分析,提出了一种通过重构电压变换矩阵和电压前馈抑制干扰的补救方法。与传统的基于PR或双PI控制器的方法相比,该方法无需改变电流控制器的结构,具有应用简单、避免复杂参数设计的优点。仿真结果验证了该方法的有效性。
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