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首页> 外文期刊>Journal of Circuits, Systems, and Computers >MODELING OF EDDY CURRENT LOSS AND TEMPERATURE OF THE MAGNETS IN PERMANENT MAGNET MACHINES
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MODELING OF EDDY CURRENT LOSS AND TEMPERATURE OF THE MAGNETS IN PERMANENT MAGNET MACHINES

机译:永磁电机中涡流和磁体温度的建模

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The eddy current loss in the magnets of permanent magnet (PM) motors in a hybrid electric vehicle (HEV) and plug-in HEV is usually not taken into consideration in traditional motor design and analysis. However, due to the high conductivity of the rare-earth magnet, neody-mium-iron-boron (NdFeB), and slot/tooth harmonics, there is eddy current loss generated inside the magnets. This loss may not attribute very much to the efficiency of the motor, but the temperature-rise inside the magnets caused by this loss can lead to the unpredictable deterioration of the magnets, such as the degradation of performance and potential demagnetization. In addition, the output voltage of pulse-width-modulated (PWM) inverter contains abundant high frequency harmonics, which induce excessive loss in the magnets. The excessive heat in PM motor induced by the eddy current loss combined with other losses can degrade the performance of the machine. This paper presents the modeling and analysis of eddy current loss in surface-mounted-magnets PM synchronous motors (SPMSM) and interior-magnets PM synchronous motors (IPMSM), operated by PWM inverter supply. Analytical methods are implemented, in conjunction with time-stepped finite-element analysis (FEA) for the calculation of eddy current loss in the magnet. Based on the calculated losses in the machines, simplified analytical models are developed as thermal circuits with network of interconnected nodes, thermal resistances and heat sources representing the heat processes within the SPMSM and IPMSM, to predict the temperature of the magnets. The predicted machine temperatures are found to be consistent with the experimental measurement.
机译:在传统的电动机设计和分析中,通常不会考虑混合动力电动汽车(HEV)和插入式HEV中的永磁(PM)电动机的磁体中的涡流损耗。但是,由于稀土磁体,钕铁硼(NdFeB)和狭缝/齿谐波的高电导率,在磁体内部会产生涡流损耗。该损耗可能不会很大地归因于电动机的效率,但是由该损耗引起的磁体内部的温度升高会导致磁体的不可预测的退化,例如性能下降和潜在的退磁。此外,脉宽调制(PWM)逆变器的输出电压包含丰富的高频谐波,这会在磁体中引起过多的损耗。涡流损耗和其他损耗共同引起的PM电动机过热会降低电机的性能。本文介绍了由PWM逆变器供电的表面安装式永磁PM同步电动机(SPMSM)和内部磁体PM同步电动机(IPMSM)的涡流损耗建模和分析。结合时间步长有限元分析(FEA)实施了分析方法,以计算磁体中的涡流损耗。基于计算出的机器损耗,简化的分析模型被开发为具有相互连接的节点,热阻和热源网络的热电路,代表SPMSM和IPMSM内的热过程,以预测磁体的温度。发现预测的机器温度与实验测量值一致。

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