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Torque improvement of five-phase surface-mounted permanent magnet machine using third-order harmonic

机译:利用三次谐波改善五相表面贴装永磁电机的转矩

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摘要

Summary form only given. This paper presents optimal third harmonics in both permanent magnet (PM) shaping and current waveform to improve the output torque of five-phase surface-mounted PM (SPM) machines. The optimal value of third harmonic injected into the sinusoidal PM shape and current waveform for maximum torque improvement is analytically derived and validated by both finite element (FE) analyses and experiments. It is found that the optimal third harmonic is 1/6 of the fundamental one for both PM shape and current waveform. For the five-phase SPM machines having rotors without shaping, Sine shaping, or Sine shaping with third harmonic injected, the electromagnetic performance including the back EMF waveform, cogging torque, average torque, torque ripple, copper loss, iron loss, impact on power inverter, and demagnetization withstand capability are compared. It is demonstrated that, although the copper loss and iron loss increase due to additional third harmonic in the winding current and magnet shape, the average torque with optimal third harmonics injected in PM shaping and current waveform can be improved by >30% while the torque ripple and remains similar to that of the one with Sine shaping. In addition, this will reduce the dc bus voltage while maintaining the machine torque density. Furthermore, the machine with Sine and Sine+3rd rotors presents much better demagnetization withstand capability performance than conventional rotor.
机译:仅提供摘要表格。本文提出了永磁(PM)成形和电流波形中的最佳三次谐波,以改善五相表面安装式PM(SPM)电机的输出转矩。通过有限元(FE)分析和实验,分析得出并验证了注入到正弦PM形状和电流波形中的三次谐波的最佳值,以最大程度地提高转矩。发现对于PM形状和电流波形,最佳的三次谐波均为基频的1/6。对于转子不带整形,正弦整形或注入了三次谐波的正弦整形的五相SPM电机,电磁性能包括反电动势波形,齿槽转矩,平均转矩,转矩脉动,铜损,铁损,对功率的影响比较了逆变器和抗磁化能力。结果表明,尽管由于绕组电流和磁体形状中的附加三次谐波而使铜损和铁损增加,但在PM成形和电流波形中注入最佳三次谐波的平均转矩可以提高> 30%,而转矩波动,并保持与正弦整形相似。此外,这将降低直流总线电压,同时保持机器的扭矩密度。此外,具有正弦和正弦+3转子的电机与常规转子相比,具有更好的抗退磁性能。

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