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A variable frequency angle-based repetitive control for torque ripple reduction in PMSMs

机译:基于变频角度的重复控制,可降低永磁同步电机的转矩脉动

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摘要

This paper presents a novel method for torque ripple reduction in PMSM drives at variable speed, using a combination of angle-based repetitive control and deadbeat current control. Based on the internal model principle, repetitive control is capable to reduce periodic torque ripple by generating a compensating action that consequently need to be synchronized with the original ripple. The time to angle, angle to time conversions for repetitive control, which improve both the stability and the performance when the sampling frequency is not integer multiple of the speed, are presented. A transient detection strategy is also developed to allow a stable torque ripple reduction even during speed and load changes.
机译:本文提出了一种新颖的方法,该方法结合了基于角度的重复控制和无差拍电流控制,可降低变速永磁同步电机驱动器的转矩脉动。基于内部模型原理,重复控制能够通过产生补偿动作来减少周期性转矩波动,因此需要与原始波动同步。提出了用于重复控制的时间到角度,角度到时间的转换,当采样频率不是速度的整数倍时,可同时提高稳定性和性能。还开发了一种瞬态检测策略,即使在速度和负载变化期间也可以稳定地减小转矩脉动。

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