感应电机驱动机械传感器故障的容错控制:投票算法的比较研究

M. Boukhnifer, A. Raisemche, D. Diallo, C. Larouci
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引用次数: 14

摘要

在本文中,我们提出了四种投票算法的两种感应电机驱动容错控制的速度传感器故障方案的比较研究。在输出容错控制器和输入容错控制器中,投票算法选择最合适的输出信号,以确保在退化模式下的最佳行为。通过对7.5 kW感应电机驱动器的仿真,以及对参数变化和负载测试的鲁棒性测试,对性能进行了评估。结果表明,在两种容错控制方案中,Euler、Newton-Raphson和极大似然投票算法都比加权平均算法更有效。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fault tolerant control to mechanical sensor failures for Induction Motor drive: A comparative study of voting algorithms
In this paper, we present a comparative study of four voting algorithms for two Induction Motor drive fault tolerant control to speed sensor failure schemes. In both Output and Input Fault Tolerant controller, the voting algorithm chooses the most appropriate output signal to ensure the best behavior in degraded mode. The performances are evaluated through simulations of a 7.5 kW Induction Motor drive with robustness testing against parametric variations, as well as under load testing. The results show that Euler, Newton-Raphson and Maximum Likelihood voting algorithms are more efficient than the Weighted Average in both Fault Tolerant Control schemes.
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