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Hall-effect sensor fault detection, identification an compensation in brushless DC drives

机译:霍尔效应传感器故障检测,识别无刷直流驱动器中的补偿

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This paper investigates Hall-effect sensor faults in brushless dc drives and proposes a very effective methodology for their detection, identification and compensation. It is shown that these faults cause erroneous commutation, generally leading to unstable operation. By using a fault detection and identification technique proposed by the authors in a previous paper related to low cost field-oriented drives, [22], together with appropriate fault-compensated position and speed estimation algorithms, it is shown for the first time that proper operation is guaranteed for both single and double faults. Comparative experimental results are provided for operation with three state of the art, Hall-effect sensor based, estimation algorithms: the zeroth order algorithm, [19], the hybrid observer, [20], and the vector-tracking observer, [21]. It is verified that stable operation is achieved with three, two or only a single Hall-effect sensor functioning correctly.
机译:本文调查无刷直流驱动器中的霍尔效应传感器故障,提出了一种非常有效的方法,用于其检测,识别和补偿。结果表明,这些故障导致错误的换向,通常导致不稳定的操作。通过使用与低成本场导向的前一篇论文中的作者提出的故障检测和识别技术,[22]以及适当的故障补偿位置和速度估计算法,它首次示出了适当的单个和双重故障保证操作。对比较实验结果提供了具有三个现有技术的操作,霍尔效应传感器的基于,估计算法:Zeroth算法,[19],混合观察器,[20]和矢量跟踪观察者[21] 。验证了用三个,两个或仅单个霍尔效应传感器进行稳定的操作,可以正确地实现稳定的操作。

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