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Adaptive wide angle PWM control strategy of BLDC motor drive for efficiency optimization and wide speed control range

机译:BLDC电机驱动器的自适应广角PWM控制策略可实现效率优化和较宽的速度控制范围

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摘要

To reduce the torque pulsation of BLDC motors caused by conventional 120° commutation conduction control, this paper proposes an adaptive wide angle control scheme with adjustable modulation waveform to achieve wide speed control range with efficiency optimization. The proposed adaptive soft commutation PWM modulation scheme is based on an adjustable modulation waveform with wide angle conduction period (more than 120° but less than 180°) and control the phase current with quasi-sinusoidal waveform to minimize the pulsation torque due to commutation. By using the adaptive PWM modulation scheme, the RMS value of phase current is lower than conventional 120° conduction mode under the same testing condition. Compared with the traditional control method, torque ripple of the BLDC motor can be reduced significantly by using the proposed control method. Simulation and experimental verification have been given to illustrate the performance of the proposed PWM strategy.
机译:为了减少传统的120°换向传导控制引起的BLDC电动机的转矩脉动,本文提出了一种具有可调调制波形的自适应广角控制方案,以实现宽速度控制范围和效率优化。所提出的自适应软换向PWM调制方案基于具有宽角导通周期(大于120°但小于180°)的可调调制波形,并使用准正弦波形控制相电流,以使由于换向而产生的脉动转矩最小。通过使用自适应PWM调制方案,在相同的测试条件下,相电流的RMS值低于传统的120°传导模式。与传统的控制方法相比,使用所提出的控制方法可以显着降低BLDC电机的转矩脉动。仿真和实验验证已经说明了所提出的PWM策略的性能。

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