无刷电激同步电机nvh性能优化方法

Hagen Spielmann, H. Friedrich
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引用次数: 4

摘要

作为正在进行的ngc项目(下一代汽车)的一部分,该项目与DLR未来道路车辆新技术的研究有关,本文致力于替代无刷电激励同步电机的优化方法,用于电动汽车。在这种应用中,需要高扭矩密度和小振动,因此对扭矩和转矩脉动进行了优化。优化参数选择了斜齿、余弦齿和齿宽等减小转矩脉动的技术。由于优化参数之间的相互作用,需要进行多参数组合优化。对用于城市电动汽车的25kw电机进行了分析,并采用不同的激励来建立工作点。结果表明,增加斜度对减小转矩和增加与激励无关的波纹有很大的作用。其他技术的影响较小。余弦形式在例子优化中对激励有很强的依赖性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Method to optimize NVH-behaviour of a brushless electrically excited synchronous machine
As part of the ongoing NGC-project (Next Generation Car) related to the research of new technologies for future road vehicles at the DLR, this paper is dedicated to the substitution of an optimization method of a brushless electrically excited synchronous machine for use in electrical vehicles. In this application high torque densities and small vibrations are needed, so an optimization of torque and torque ripple is done. As optimization parameters torque ripple reduction techniques as skewing, cosine formed tooth and width of tooth are chosen. The combined multi-parameter optimization is necessary because of interactions between the optimization parameter effects. An analysis for a machine of 25 kW, used in urban electric vehicles, is done with different excitations to build up the working points. The results show a large effect of increasing skewing to decrease torque and increase ripples independent of excitation. The effects of the other techniques are smaller. The cosine form has in the example optimization a strong dependency on excitation.
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