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Position Sensorless Control Without Phase Shifter for High-Speed BLDC Motors With Low Inductance and Nonideal Back EMF

机译:具有低电感和非理想反电动势的高速BLDC电机的无相移无位置传感器控制

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摘要

This paper presents a novel method for position sensorless control of high-speed brushless DC motors with low inductance and nonideal back electromotive force (EMF) in order to improve the reliability of the motor system of a magnetically suspended control moment gyro for space application. The commutation angle error of the traditional line-to-line voltage zero-crossing points detection method is analyzed. Based on the characteristics measurement of the nonideal back EMF, a two-stage commutation error compensation method is proposed to achieve the high-reliable and high-accurate commutation in the operating speed region of the proposed sensorless control process. The commutation angle error is compensated by the transformative line voltages, the hysteresis comparators, and the appropriate design of the low-pass filters in the low-speed and high-speed region, respectively. High-precision commutations are achieved especially in the high-speed region to decrease the motor loss in steady state. The simulated and experimental results show that the proposed method can achieve an effective compensation effect in the whole operating speed region.
机译:本文提出了一种新颖的方法,用于低电感和非理想反电动势(EMF)的高速无刷直流电动机的无位置传感器控制,以提高用于空间应用的磁悬浮控制力矩陀螺仪的电动机系统的可靠性。分析了传统线间电压过零点检测方法的换相角误差。基于非理想反电动势的特性测量,提出了一种两级换相误差补偿方法,以在所提出的无传感器控制过程的运行速度范围内实现高可靠,高精度的换相。换向角误差分别通过变换线电压,磁滞比较器以及低速和高速区域中低通滤波器的适当设计来补偿。特别是在高速区域中,可实现高精度换向,以减少稳态下的电机损耗。仿真和实验结果表明,该方法可以在整个运行速度范围内达到有效的补偿效果。

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