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Brushless doubly-fed induction machines: Torque ripple

机译:无刷双馈感应电机:转矩脉动

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The brushless Doubly-Fed Induction Machine (DFIM) without its brush-gear and slip-rings seems interesting as successor of the normal DFIG in wind turbine drivetrains. However, the brushless DFIM magnetic field has a rich space-harmonic spectrum, which causes additional torque ripple. This paper focuses on torque ripple in the brushless DFIM. The causes and origin of torque ripple are discussed and an analytical model is developed that derives the torque ripple from the air-gap magnetic field distribution. Further, a finite element method for torque ripple calculation is presented. Both methods are used to calculate the torque response of a case study machine. Results are compared and the accuracy of the analytical model is validated with good result. The analytical model is then used to further analyse the torque ripple, resulting in exact torque ripple frequencies and additional insight in the cause of the torque ripple.
机译:无刷双馈感应电机(DFIM),不带电刷装置和滑环,作为风力涡轮机传动系统中普通DFIG的继任者似乎很有趣。但是,无刷DFIM磁场具有丰富的空间谐波频谱,这会引起额外的转矩波动。本文重点研究无刷DFIM中的转矩脉动。讨论了转矩脉动的原因和起源,并建立了一个分析模型,该模型从气隙磁场分布中得出转矩脉动。此外,提出了一种用于转矩脉动计算的有限元方法。两种方法都用于计算案例研究机器的扭矩响应。比较结果并验证分析模型的准确性,结果良好。然后,将分析模型用于进一步分析转矩波动,从而获得精确的转矩波动频率,并进一步了解转矩波动的原因。

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