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Electromagnetic Loss Modeling and Demagnetization Analysis for High Speed Permanent Magnet Machine

机译:高速永磁电机电磁损耗建模与退磁分析

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摘要

This paper presents a research work on the electromagnetic loss modeling and demagnetizations analysis for a high-speed permanent magnet machine (HSPMM). The iron loss is estimated by improved modeling considering harmonics and rotational magnetic field effects to achieve high precision; rotor eddy current loss is researched and comprehensively investigated using finite-element method (FEM). The auxiliary slot and PM beveling are also proposed to reduce the rotor eddy current loss for machine at high-speed operation. Temperature-dependent PM demagnetization modeling is utilized in HSPMM FEM analysis to investigate machine performance due to temperature variation, while optimized rotor structures are proposed and comparatively researched by FEM to improve the machine anti-demagnetization capability in harsh conditions. The HSPMM temperature is estimated based on the calculated loss results and machine computational fluid dynamic modeling. Experimental measurements on the prototype machine verify the effectiveness of the machine electromagnetic and thermal modeling in the paper.
机译:本文介绍了有关高速永磁电机(HSPMM)的电磁损耗建模和退磁分析的研究工作。铁损通过考虑谐波和旋转磁场效应的改进模型来估算,以实现高精度;利用有限元方法对转子涡流损耗进行了研究和综合研究。还提出了辅助槽和PM坡口,以减少高速运行时机器的转子涡流损耗。在HSPMM有限元分析中,使用温度相关的PM退磁模型来研究温度变化引起的机器性能,同时提出并通过FEM进行了比较研究的优化转子结构,以提高恶劣条件下的机器抗退磁能力。 HSPMM温度是基于计算的损失结果和机器计算的流体动力学模型估算的。在原型机上进行的实验测量验证了本文电磁和热建模的有效性。

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