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Thermal-fluid and electromagnetic coupling analysis and test of a traction motor for electric vehicles

机译:电动汽车牵引电动机的热流体和电磁耦合分析及试验

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摘要

This paper proposes a multi-phasic coupling analysis and test of a 50kW traction motor for electric vehicles. The temperature-dependent properties of the electrical and magnetic materials of the interior permanent magnet traction motor are not negligible over a wide operation range of the vehicle. The heat produced by the electromagnetic power loss changes the motor's properties, and in turn the motor performance changes to produce a different power loss. This two-way coupled electromagnetic and thermal-fluid analysis of the torque and speed curve and the transient thermal response at a rated operation point are simulated and compared with the traditional one-way coupling analysis. The simulation results are also compared with and proved by experiments on a prototype motor. The experimental results show that it is critical and necessary to predict the motor performance by means of the proposed two-way coupling analysis that provides more accurate information than the traditional one-way coupling analysis.
机译:本文提出了一种用于电动车辆50kW牵引电动机的多相耦合分析和测试。在车辆的宽操作范围内,内部永磁牵引电动机的电气和磁性材料的温度依赖性性质不可忽略。通过电磁功率损耗产生的热量会改变电机的性能,然后转动电机性能变化以产生不同的功率损耗。这种双向耦合电磁和扭矩和速度曲线的热流体分析以及额定操作点处的瞬态热响应并与传统的单向耦合分析进行比较。还将模拟结果与原型电动机的实验进行了比较。实验结果表明,通过提出的双向耦合分析来预测电动机性能是至关重要的,需要提供比传统的单向耦合分析更准确的信息。

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