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High-Stability Position-Sensorless Control Method for Brushless DC Motors at Low Speed

机译:低速无刷直流电动机的高稳定位置无传感器控制方法

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摘要

In order to improve the stability of brushless DC (BLDC) motors at low speed, a high-stability position-sensorless controlmethod is proposed in this paper. Because the back electromotive force (EMF) is very small at low speed, a novel algorithm is proposed to detect the zero crossing point of back EMF accurately. First, the line-to-line back EMF is computed based on the mathematical model of BLDC motors. Then, a low-pass filter (LPF) with alterable cutoff frequency is used to reduce the disturbance of the line-to-line back EMF. Last, the commutation signal is obtained by detecting the zero crossing point (ZCP) of the line-to-line back EMF. However, the commutation signal is delayed by the LPF. For this reason, based on the three-phase backEMF, a novel compensation algorithm including an open loop and a close loop is proposed to compensate for commutation error. Moreover, the speed feedback has a big delay at low speed. According to this, a novel speed calculation algorithm is presented to decrease the delay. Both the simulation and experimental results validate the high stability and reliability of the proposed method.
机译:为了提高低速下无刷直流(BLDC)电动机的稳定性,本文提出了一种高稳定位置无传感器控制方法。由于后电动势(EMF)以低速非常小,所以提出了一种新颖的算法,以准确地检测反电动势的零交叉点。首先,基于BLDC电机的数学模型来计算线到线反应EMF。然后,使用具有可变截止频率的低通滤波器(LPF)来减少线路到线EMF的干扰。最后,通过检测线到线反应EMF的零交叉点(ZCP)来获得换向信号。但是,换向信号被LPF延迟。因此,基于三相BackeMF,提出了一种新的补偿算法,包括开环和闭环来补偿换向误差。此外,速度反馈在低速下具有大的延迟。据此,提出了一种新颖的速度计算算法来降低延迟。仿真和实验结果均验证了所提出的方法的高稳定性和可靠性。

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