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Analysis and mitigation of torsional vibration of PM brushless DC drives with direct torque controller

机译:带有直接转矩控制器的PM无刷直流驱动器的扭转振动分析和缓解

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In this paper, the stator torsional vibration of a direct-torque-controlled permanent magnet brushless DC drive is investigated. To facilitate the analysis, a new method to measure the torsional mechanical transfer function of the drive system by utilizing the cogging torque as a constant excitation source is presented. Experimental investigation reveals that the torsional vibration in the prototype brushless DC drive is mainly attributed to cogging torque and commutation torque ripple, and it consists of harmonics at frequencies multiple of 6ƒe, with different amplitudes affected by the magnitude of torque harmonics and the structural transfer function of the stator-mounting assembly. Alternate torque-ripple compensative strategies are studied and their effectiveness in minimizing torsional vibration is validated experimentally.
机译:本文研究了直接转矩控制的永磁无刷直流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的扭转机械传递函数的新方法。实验研究表明,原型无刷直流驱动器的扭转振动主要归因于齿槽转矩和换向转矩脉动,并且由频率为6ƒ e 的谐波组成,振幅受幅度的影响不同转矩谐波和定子安装组件的结构传递函数的关系。研究了替代的转矩脉动补偿策略,并通过实验验证了其在最小化扭转振动中的有效性。

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