Sensorless brushless DC motor drive based on commutation instants derived from the line voltages and line voltage differences

Chetan K. Lad, R. Chudamani
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引用次数: 5

Abstract

Determination of commutation instant is essential for the control of brushless DC motor (BLDC) drive. Conventionally hall sensors have been used to derive commutation instants. Use of position sensors has its own merits and demerits. In order to overcome the limitations of position sensor based drives, sensorless techniques are used for control of BLDC motor. The detection of the zero-crossing of the back-EMF is a widely used method for sensorless control. The commutation instants are derived from the information of zero crossing point of the back EMF. Several algorithms have been proposed in literature for the detection of back EMF zero crossing. In this paper a novel method for determining the commutation instants directly from the comparison of the line-to-line voltages and their difference voltages is presented. The performance of the BLDC drive with the proposed algorithm is studied and verified through simulation done in MATLAB/SIMULINK environment.
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无传感器直流无刷电机的驱动是基于换向瞬间得到的线路电压和线路电压的差值
换相瞬间的确定是控制无刷直流电动机的关键。传统的霍尔传感器是用来计算换相瞬间的。位置传感器的使用有其优点和缺点。为了克服基于位置传感器驱动的局限性,无传感器技术被用于无刷直流电机的控制。反电动势过零检测是一种广泛应用的无传感器控制方法。换流瞬间由反电动势的零交叉点信息导出。文献中提出了几种检测反电动势过零的算法。本文提出了一种通过比较线路电压和线路电压差直接确定换相瞬间的新方法。在MATLAB/SIMULINK环境下对该算法的无刷直流驱动性能进行了研究和仿真验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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