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Electromagnetic and mechanical analysis of high speed SPM rotor with copper shield

机译:带铜屏蔽的高速SPM转子的电磁和力学分析

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For high-speed applications, the surface-mounted permanent magnet (SPM) machine is preferred due to its high torque density and efficiency. However, induced eddy currents in the rotor conductive parts result in a loss of efficiency and rotor heating. Therefore, several methods to reduce such losses have been proposed in the literature including copper shielding. In this paper, a high-speed SPM machine rotor with a copper shield is designed and investigated both electromagnetically and mechanically. Several quantitative investigations including placing the copper sheet around the retaining sleeve or magnets, different copper sheet and airgap thicknesses, different retaining sleeve materials, different harmonic contents in the current waveform, i.e. pulse amplitude modulation (PAM) and pulse width modulation (PWM) generated waveforms, and different frequencies and current levels are reported. Additionally, a mechanical analysis investigating possible failure modes of the rotor with the copper sheet is reported.
机译:对于高速应用,表面安装式永磁(SPM)电机是首选,因为它具有高扭矩密度和高效率。但是,在转子导电部件中感应出的涡流会导致效率和转子发热的损失。因此,在文献中已经提出了几种减少这种损耗的方法,包括铜屏蔽。本文设计并设计了带有铜屏蔽的高速SPM电机转子,并进行了电磁和机械方面的研究。若干定量研究,包括将铜板放置在固定套筒或磁体周围,不同的铜板和气隙厚度,不同的固定套筒材料,电流波形中的不同谐波含量,即生成的脉冲幅度调制(PAM)和脉冲宽度调制(PWM)波形,以及不同的频率和电流水平。此外,还报告了一项机械分析,研究了带有铜片的转子可能出现的故障模式。

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