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Fast Commutation Error Compensation Method of Sensorless Control for MSCMG BLDC Motor With Nonideal Back EMF

机译:具有非直视返回EMF的MSCMG BLDC电机无传感器控制的快速换向误差补偿方法

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摘要

As aerospace applications, high reliability and low power consumption operation of the brushless direct current (BLDC) motor for the magnetically suspended control moment gyro (MSCMG) is the primary consideration. To guarantee reliability, the sensorless control without position sensors is adopted. Due to the phase lag caused by hardware and software, the commutation error is inevitable. In order to reduce losses, this article proposes a fast commutation error compensation method to improve commutation accuracy. First, the control topology of the BLDC motor with a buck converter and the commutation point detection circuit are presented. Then, the conducting back electromotive force (EMF) contained in a novel derived dc-link voltage expression is estimated through an extended state observer (ESO). Finally, the commutation error is extracted from the conducting back EMF for compensation. Different from the conventional closed-loop correction method based on the back EMF symmetry, the proposed commutation error compensation method can obtain the commutation error within only one commutation cycle by a continuous estimation with the ESO. The effectiveness of the proposed fast commutation error compensation method was evaluated with an MSCMG system.
机译:随着航空航天应用,用于磁悬浮控制矩陀螺(MSCMG)的无刷直流(BLDC)电机的高可靠性和低功耗操作是主要考虑。为了保证可靠性,采用无传感器控制而没有位置传感器。由于硬件和软件引起的阶段滞后,换向误差是不可避免的。为了减少损失,本文提出了一种快速换向误差补偿方法,以提高换向准确性。首先,提出了具有降压转换器和换向点检测电路的BLDC电机的控制拓扑。然后,通过扩展状态观察器(ESO)估计新颖的导出的DC连杆电压表达式中包含的导电电动势(EMF)。最后,从导通EMF中提取换向误差以进行补偿。与基于反态对称的传统闭环校正方法不同,所提出的换向误差补偿方法可以通过与ESO连续估计来仅在一个换向周期内获得换向误差。用MSCG系统评估了所提出的快速换向误差补偿方法的有效性。

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