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Analysis and Mitigation of Torsional Vibration of PM Brushless AC/DC Drives With Direct Torque Controller

机译:带有直接转矩控制器的PM无刷AC / DC驱动器的扭振分析与缓解

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摘要

The stator torsional vibration of permanent-magnet brushless AC/DC (BLAC/BLDC) drives with direct torque control (DTC) schemes and alternate torque-ripple compensation strategies is investigated systematically. To facilitate the analysis, a new method to measure the torsional vibration transfer function of the drive system by utilizing the cogging torque as a constant excitation source is proposed. Improved BLAC/BLDC DTC schemes, which account for the influences of nonsinusoidal back electromotive force (EMF), cogging torque, and commutation torque ripples (in the case of BLDC), are developed. Their effectiveness in minimizing low-order stator frame torsional vibration is validated and confirmed experimentally. Experimental investigation reveals that the stator torsional vibration of the prototype machine under conventional BLAC DTC operation is largely attributed to the nonsinusoidal back EMF and cogging torque while that under BLDC DTC operation is mainly caused by the cogging torque and distorted phase current during commutation interval. The torsional vibration spectra in both operating modes consist of harmonics with frequencies which are multiples of six times the fundamental electrical frequency, while their amplitudes are affected by the magnitude of exciting torque harmonics and the torsional vibration transfer function of the stator assembly.
机译:系统研究了具有直接转矩控制(DTC)方案和替代转矩脉动补偿策略的永磁无刷AC / DC(BLAC / BLDC)驱动器的定子扭转振动。为了便于分析,提出了一种利用齿槽转矩作为恒定激励源来测量驱动系统扭转振动传递函数的新方法。开发了改进的BLAC / BLDC DTC方案,该方案考虑了非正弦反电动势(EMF),齿槽转矩和换向转矩脉动(在BLDC情况下)的影响。实验证明了它们在最小化低阶定子框架扭转振动方面的有效性。实验研究表明,常规BLAC DTC操作下原型机的定子扭转振动主要归因于非正弦反电动势和齿槽转矩,而BLDC DTC操作下原型机的定子扭转振动主要由换向间隔期间的齿槽转矩和相电流畸变引起。两种工作模式下的扭转振动频谱均由谐波组成,该谐波的频率是基本电频率的六倍,而其振幅则受励磁转矩谐波的大小和定子组件的扭转振动传递函数的影响。

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