Research on control of non-ideal permanent magnet brushless motor in view of torque ripple minimization

S. H. Edjtahed, M. Ahmadi, A. Halvaei Niasar
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引用次数: 1

Abstract

Due to some inevitable restrictions during fabrication of permanent magnet brushless (PMBL) motors, some of them have neither sinusoidal nor trapezoidal back-EMF voltages, and these types of motor are named non-ideal PMBL motors. Employing conventional control strategies of permanent magnet synchronous motors (PMSMs) and brushless DC motors (BLDCMs) leads to lower efficiency and causes unwanted torque ripple, vibration and acoustic noises. This paper explores a review on control of non-ideal PMBL motors and investigates the torque response of non-ideal PMBL motor while is controlled with conventional control strategies and presents a novel torque ripple minimization method. Investigated control strategies include quasi-square current control using dc-link current, quasi-square current control using three phases current, direct torque control, vector control, and pseudo vector control that are used for speed control of non-ideal PMBL motor. Then, a novel torque ripple minimization based on selective torque harmonic elimination and using one cycle control strategy is suggested. Simulation results indicate the non-ideal PMBL motor by novel proposed method develops smoother torque and lower torque ripple rather than all previous control strategies. It is suitable for any PMBL motor with any back-EMF voltage waveform.
基于转矩脉动最小化的非理想永磁无刷电机控制研究
由于永磁无刷电机在制造过程中不可避免的一些限制,有些电机既没有正弦波也没有梯形反电动势电压,这些类型的电机被称为非理想永磁无刷电机。采用传统的永磁同步电机和无刷直流电动机控制策略会导致效率低下,并且会产生不必要的转矩脉动、振动和噪声。本文对非理想PMBL电机的控制进行了综述,研究了非理想PMBL电机在常规控制策略下的转矩响应,提出了一种新的转矩脉动最小化方法。研究的控制策略包括采用直流电流的准方电流控制、采用三相电流的准方电流控制、直接转矩控制、矢量控制和用于非理想PMBL电机速度控制的伪矢量控制。然后,提出了一种基于选择性转矩谐波消除和单周期控制策略的转矩脉动最小化方法。仿真结果表明,与以往的控制策略相比,该方法能使非理想PMBL电机的转矩更平滑,转矩脉动更小。它适用于任何反电动势电压波形的PMBL电机。
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