Open-Phase Fault-Tolerant Control Approach for EV PMSM based on Four-Leg VSI

Mohamed E. Elsayed, M. Hamad, H. Ashour
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引用次数: 1

Abstract

The major malfunction of Permanent Magnet Synchronous Motor (PMSM) in Electric Vehicle (EV) applications is an open-phase defect, which degrades motor efficiency and increases losses due to unbalanced phase currents. Traditional Fault-Tolerant Control (FTC) techniques, on the other hand, could suffer from the monitoring problems of sinusoidal-shaped current references. In this study, a proposed fault-tolerant approach for open-phase during the driving cycle and starting of the PMSM is suggested, which differs from earlier fault-tolerant techniques by suggesting a proposed compensating transformation matrix for current and voltage references in the d-q rotating reference frame will be translated to the phase current and voltage references of the two healthy remaining phases. The proposed setup enables the EV to be operated under open-phase fault-tolerant (OPFT) with simple controller and high performance. Furthermore, since the proposed system depends on a four-leg inverter, it has a higher fault-tolerance capability than the three-phase Voltage Source Inverter (VSI) technique, to also compensate the possibility of loss of any VSI leg, but for sure with additional cost of the overall drive system. Eventually, the simulation output results supported the suggested fault-tolerant approach under Field-Oriented Control (FOC) for different modes of operations.
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基于四腿VSI的电动永磁同步电机开相容错控制方法
在电动汽车(EV)应用中,永磁同步电机(PMSM)的主要故障是缺相缺陷,缺相缺陷会降低电机效率,并由于相电流不平衡而增加损耗。另一方面,传统的容错控制(FTC)技术可能会受到正弦波型电流参考的监测问题的困扰。在本研究中,提出了一种针对PMSM驱动周期和启动过程中开相的容错方法,该方法不同于先前的容错技术,提出了一种针对d-q旋转参考系中电流和电压参考的补偿变换矩阵,将其转换为两个健康剩余相的电流和电压参考。所提出的设置使EV能够以简单的控制器和高性能在开相容错(OPFT)下运行。此外,由于所提出的系统依赖于一个四腿逆变器,它具有比三相电压源逆变器(VSI)技术更高的容错能力,也补偿了任何VSI腿损失的可能性,但肯定会增加整个驱动系统的成本。最后,仿真输出结果支持了在场面向控制(FOC)下针对不同操作模式提出的容错方法。
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