电动汽车用IPM同步电机的优化设计

M. U. Sardar, Dou Manfeng, Umar Saleem, Mannan Hassan, Muhammad Kashif Nawaz
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引用次数: 1

摘要

目前,由于零排放、噪音最低、功率密度与尺寸或重量比更高、性能更高等优点,以电动机为基础的充电和运行车辆在使用中更为普遍。在这种情况下,使用永久内磁铁(IPMSM)的同步电机是一种合适的候选者,也是电动汽车(ev)机械发电的潜在来源。与其他类型的电动机家族相比,它们具有独特的优点。采用带内v型转子的稀土永磁材料作为模型电机,其优化设计显示出更高的性能特点。本文提出并验证了一种优化设计的最先进的IPMSM电机,该电机具有更高的转矩密度,更低的转矩波动,驱动效率,更小的磁体体积和更高的功率因数。设计输入参数包括磁体厚度、宽度和磁极v角。采用60kW永磁同步电机初始模型,通过FEA分析、opti俚语优化得出结果,并通过城市驱动循环输入和宽速度范围内的运行验证了性能。
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State-of-the-Art Design Optimization of an IPM Synchronous Motor for Electric Vehicle Applications
Nowadays, vehicles based on electric charge and operation due to the motor are more prevalent in use due to their superiority in zero-emission, lowest noise, higher power density to size or weight ratio, and higher performance. In this scenario, synchronous machines using permanent interior magnets (IPMSM) are a suitable candidate and a potential source of mechanical power generation in electric vehicles (EVs). They have unique merits over the other types of electric motor families. A rare earth permanent magnet material with an interior V-type rotor is used as a model motor, and its optimal design shows higher performance characteristics. This research paper presents and validates an optimally designed state-of-the-art IPMSM motor, which gives higher torque density, lower torque ripples, efficiency of the drive, lower magnet volume, and higher power factor. The design input parameters include magnet thickness, width, and pole V-angle. Using the initial model of a 60kW PMSM motor, the results are generated through FEA analysis, optimization with OptiSlang, and performance is validated with an input of urban drive cycle and operation in the wide speed range.
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