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首页> 外文期刊>IEEE Transactions on Industry Applications >Hall-Effect Sensor Fault Detection, Identification, and Compensation in Brushless DC Drives
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Hall-Effect Sensor Fault Detection, Identification, and Compensation in Brushless DC Drives

机译:无刷直流驱动器中的霍尔效应传感器故障检测,识别和补偿

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摘要

In this paper, binary Hall-effect sensor faults are investigated in rectangular-current-fed brushless dc (BLDC) drives and a very effective methodology for their detection, identification, and compensation is explored. It is shown that these faults cause erroneous commutation, generally leading to unstable operation. Using a fault detection and identification technique proposed by the authors in a recent paper on low-cost field-oriented drives, it is possible to pinpoint the faulty sensors. In this paper, it is demonstrated that the destabilizing effect of these faults on motion-state estimation can be compensated for in any position and speed estimation algorithm, as long as it is properly readapted. To this end, it is shown how to incorporate such fault-compensation in three state-of-the-art estimation algorithms: 1) the zeroth-order algorithm (ZOA); 2) the hybrid observer (HO); and 3) the vector-tracking observer (VTO). Comparative experimental tests are performed and it is verified that stable operation is achieved with three, two, or only a single Hall-effect sensor functioning correctly. These results show that the classical BLDC drive with three Hall-effect sensors has an inherent double redundancy to position-sensor faults. With the proposed method, this property can be exploited in systems that require very high reliability, such as in aerospace and automotive applications. Redundancy can be increased, using more than three Hall-effect sensors; reduced using two sensors; or eliminated using a single sensor, in ultra low-cost applications where redundancy is not a requirement.
机译:在本文中,研究了矩形电流馈电无刷直流(BLDC)驱动器中的二进制霍尔效应传感器故障,并探索了一种非常有效的检测,识别和补偿方法。结果表明,这些故障会导致换向错误,通常会导致运行不稳定。使用作者在最近的有关低成本磁场定向驱动器的论文中提出的故障检测和识别技术,可以查明故障传感器。在本文中,证明了只要适当地重新适应,这些故障对运动状态估计的不稳定影响就可以在任何位置和速度估计算法中得到补偿。为此,它显示了如何将这种故障补偿纳入三种最新的估计算法中:1)零阶算法(ZOA); 2)混合观察者(HO);和3)矢量跟踪观察器(VTO)。进行了对比实验测试,并验证了使用三个,两个或仅一个霍尔效应传感器正常工作可获得的稳定操作。这些结果表明,具有三个霍尔效应传感器的经典BLDC驱动器具有对位置传感器故障的固有双重冗余。使用提出的方法,可以在要求非常高可靠性的系统中利用此属性,例如在航空航天和汽车应用中。使用三个以上的霍尔效应传感器可以增加冗余度;减少使用两个传感器;或在不需要冗余的超低成本应用中使用单个传感器消除或消除。

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