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Evaluation of the Virtual Third Harmonic Back-EMF in Identifying Misaligned Hall-effect Position Sensors in Brushless DC Motor Drives

机译:在识别无刷直流电动机驱动器中未对准的霍尔效应位置传感器中的虚拟三次谐波反电动势的评估

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In this study, a robust fault diagnostic technique, based on the virtual third harmonic Back-EMF, is proposed to identify the Hall-effect position sensor misalignment in Brushless DC (BLDC) motor drives. The proposed technique can also be exploited in sensorless BLDC drives to highlight the commutation errors and, consequently, the unbalanced operation of a BLDC motor drive, either sensor-based or not, can be detected. Therefore, potential signals, which incorporate the virtual third harmonic Back-EMF, are investigated in the frequency domain for a reliable diagnosis of the defective system. Through the comparison of the pros and cons of each signal, the voltage difference between the neutral point of a resistor network and the half of the DC-link is proposed for the development of the diagnostic technique. Thus, this signal is evaluated in identifying both the unbalanced system operation and the severity of the defect in a wide speed and load range.
机译:在这项研究中,提出了一种基于虚拟三次谐波Back-EMF的鲁棒故障诊断技术,以识别无刷直流(BLDC)电机驱动器中的霍尔效应位置传感器未对准。所提出的技术还可以在无传感器BLDC驱动器中使用,以突出显示换向误差,因此,可以检测到BLDC电动机驱动器的不平衡运行,无论是基于传感器还是不基于传感器。因此,在频域中研究了包含虚拟三次谐波Back-EMF的电势信号,以可靠地诊断故障系统。通过比较每个信号的优缺点,提出了电阻器网络中性点与直流母线一半之间的电压差,以发展诊断技术。因此,在广泛的速度和负载范围内,在识别不平衡的系统操作和缺陷的严重性时都需要评估此信号。

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