A new current control algorithm for torque ripple reduction of BLDC motors

Tae-Sung Kim, Sung-Chan Ahn, D. Hyun
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引用次数: 45

Abstract

The BLDC (brushless DC) motor is characterized by linear torque to current and speed to voltage. It has low acoustic noise and fast dynamic response. Moreover, it has high power density with a high proportion of torque to inertia in spite of a small size drive. However, when armature current is commutated, the current ripple is generated by the motor inductance components in stator windings and back-EMF This current ripple caused torque ripple. Therefore, it is difficult to apply the BLDC motor to a precision servo drive system. In this paper, a new current control algorithm using Fourier series coefficients is proposed. This proposed algorithm can minimize torque ripple due to the phase current commutation of a BLDC motor. Simulation and experimental results prove the effectiveness at the proposed algorithm through comparison with the conventional unipolar PWM method.
一种新的无刷直流电机转矩脉动抑制电流控制算法
无刷直流电动机的特点是转矩对电流和速度对电压呈线性关系。噪声小,动态响应快。此外,它具有高功率密度与高比例的扭矩惯性,尽管一个小尺寸的驱动器。然而,当电枢电流换向时,电机定子绕组中的电感元件和反电动势产生电流纹波,这种电流纹波引起转矩纹波。因此,将无刷直流电机应用于精密伺服驱动系统是困难的。本文提出了一种基于傅立叶级数系数的电流控制算法。该算法可以最大限度地减小无刷直流电机相电流换相引起的转矩脉动。通过与传统单极PWM方法的比较,仿真和实验结果证明了该算法的有效性。
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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