改进用于降低开关磁阻电机声学噪声的分析电流波形

IF 7.9 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Fares S. El-Faouri;Yifei Cai;Akira Chiba
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引用次数: 0

摘要

本文提出了一种能使开关磁阻电机径向力总和变平的电流波形细化算法。扁平化径向力总和消除了第三个径向力分量的倍数。这些分量会激发呼吸模式振动,而呼吸模式振动通常是极数较多的开关磁阻电机的主要振动。之前提出的用于平整径向力总和的电流分析推导忽略了磁饱和,从而限制了其在低转矩区域的适用性。因此,在高转矩饱和条件下,先前的波形整形会降低径向力和的平坦化效果。对分析电流波形的改进解决了这一局限性,即使在高扭矩条件下也能有效地平整径向力总和。此外,所提出的电流波形在高扭矩区域的峰值明显低于文献中的扁平化方法,从而减少了对更高等级逆变器的需求。有限元分析和实验验证了所提方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Refinement of Analytical Current Waveform for Acoustic Noise Reduction in Switched Reluctance Motor
In this article, a refinement algorithm of the current waveform that flattens the radial-force sum in switched reluctance motors is proposed. Flattening the radial-force sum eliminates the multiples of the third radial-force component. These components excite the breathing mode vibration, which is typically the dominant vibration in switched reluctance motors with a high number of poles. The previously proposed analytical current derivation for flattening the radial-force sum neglects magnetic saturation, limiting its applicability to low-torque region. Consequently, for high-torque saturation conditions, the previous waveform shaping degrades in flattening the radial-force sum. The proposed refinement of the analytical current waveform addresses this limitation, enabling effective radial-force sum flattening even under high-torque conditions. Additionally, the proposed current exhibits significantly lower peaks than those of the flattening methods at high-torque region in the literature, mitigating the need for higher-rated inverters. Finite element analysis and experimental validation verify the effectiveness of the proposed method.
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CiteScore
13.50
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