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Reduction of Rotor Harmonic Eddy-Current Loss of High-Speed PM BLDC Motors by Using a Split-Phase Winding Method

机译:分相绕组法降低高速永磁无刷直流电动机转子谐波涡流损耗

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摘要

Low-order harmonic currents in high-speed permanent magnet brushless dc (PM BLDC) motors cause large rotor eddy-current loss, resulting in high temperature rise and even overheating in the rotors, thus their application in the field of high-speed drive is limited. The rotor eddy-current loss can be reduced by using a split-phase winding method. In this paper, various time-space orders of harmonic eddy-current losses in the rotors of the PM motors with and without split-phase winding are quantified. The calculated results indicate that the rotor harmonic eddy-current losses generated by the low-order harmonic currents, which inherently exist in PM BLDC motors, are greatly reduced. Furthermore, associated with the characteristics of harmonic currents of PM BLDC motors, the mechanism of drastically reducing the rotor harmonic eddy-current lass of high-speed PM motors by using the split-phase winding method is revealed and experimentally validated.
机译:高速永磁无刷直流(PM BLDC)电动机中的低次谐波电流会导致较大的转子涡流损耗,从而导致转子中的高温上升甚至过热,因此它们在高速驱动领域的应用是有限。通过使用分相绕组方法,可以减小转子的涡流损耗。在本文中,量化了具有和不具有分相绕组的永磁电动机转子中谐波涡流损耗的各种时空量级。计算结果表明,永磁无刷直流电动机固有的低阶谐波电流所产生的转子谐波涡流损耗已大大降低。此外,结合永磁无刷直流电动机的谐波电流特性,揭示并通过分相绕组法大大降低了高速永磁电动机的转子谐波涡流损耗,并进行了实验验证。

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