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Design and experimental verification of a direct-drive interior PM synchronous machine using a saturable lumped-parameter model

机译:使用饱和集总参数模型的直驱式内部永磁同步电机的设计和实验验证

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This paper presents the design and experimental verification of a 6 kW interior permanent magnet (IPM) synchronous machine intended for an automotive direct-drive starter/alternator application. The machine was designed using a saturable lumped-parameter magnetic circuit model in combination with a Monte Carlo optimization process that minimized the machine-plus-converter cost. An experimental IPM machine has been constructed based on the resulting design specifications. Laboratory tests have confirmed the accuracy of the analytical models for predicting the q-axis inductance L/sub q/ (including saturation effects) and the torque production characteristics, but discrepancies between the predicted and measured d-axis inductance L/sub d/ were revealed. The impact of these differences on machine performance is discussed, as well as potential adjustments in the IPM analytical model to improve the performance of future machines.
机译:本文介绍了用于汽车直接驱动启动器/交流发电机应用的6 kW内部永磁(IPM)同步电机的设计和实验验证。该机器是使用可饱和集总参数磁路模型结合蒙特卡洛优化过程进行设计的,该过程使机器加转换器的成本降至最低。已根据最终的设计规范构造了实验IPM机器。实验室测试已经证实了预测q轴电感L / sub q /(包括饱和效应)和扭矩产生特性的分析模型的准确性,但是预测和测得的d轴电感L / sub d /之间的差异是揭示了。讨论了这些差异对机器性能的影响,以及IPM分析模型中可能进行的调整,以提高未来机器的性能。

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