An Enhanced Fault Tolerant Control Against Current Sensor Failures in Induction Motor Drive by Applying Space Vector

C. Tran, P. Brandstetter, Minh Huu Chau Nguyen, S. D. Ho, Phuong Nhat Pham, B. H. Dinh
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Abstract

In this paper, an enhanced active fault-tolerant control (FTC) is proposed to solve a current sensor failure in the induction motor drive (IMD) using two current sensors. The proposed FTC method applies only one observer to diagnose the faults and recon gure the control signals by the space stator current. The diagnosis function is made up of a comparison algorithm between the measured current space vector and the estimated space vector. Then, incorrect feedback stator currents are replaced by the estimated values in the recon guration function. The amplitude of a healthy measured current is applied to adjusted the accuracy of estimated current signals. The IMD uses the eld-oriented control (FOC) technique to control the speed and torque. The e ectiveness in stabilizing the IMD system when a current sensor error occurs is veri ed by various simulations in the Matlab-Simulink environment.
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基于空间矢量的异步电机电流传感器故障容错控制
本文提出了一种增强的主动容错控制(FTC),以解决感应电机驱动(IMD)中使用两个电流传感器的电流传感器故障。该方法采用单观测器诊断故障,利用空间定子电流识别控制信号。诊断函数由测量电流空间矢量与估计空间矢量的比较算法组成。然后,用重构函数中的估计值替换不正确的反馈定子电流。利用健康测量电流的幅值来调整估计电流信号的精度。IMD采用长者定向控制(FOC)技术来控制速度和扭矩。在Matlab-Simulink环境中进行了各种仿真,验证了在电流传感器发生误差时稳定IMD系统的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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