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Basic Study on Efficiency Improvement of Hybrid Excitation Flux Switching Motor using Variably Magnetizable Permanent Magnets for Automotive Traction Drives

机译:基于可变磁化永磁体的汽车牵引传动混合励磁开关电动机效率提高的基础研究

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This paper deals with a hybrid excitation flux switching motor (HEFSM) employing a variably magnetizable permanent magnet as an automobile traction motor for a hybrid electric vehicle. Compared with the conventional HEFSM, a difference can be found on the stator body that newly utilizes the variably magnetizable permanent magnets adding to the conventional parts such as laminated steel core, three-phase armature coils, field excitation coils and constantly magnetized permanent magnets. A basic concept to improve motor efficiency is based on replacing the mmf of field excitation coils with that of the variably magnetizable permanent magnets. The magnetizing state of the variably magnetizable permanent magnet is adjusted properly according to operating conditions, resulting in the copper loss and iron loss reductions. FEA-based design and simulation as well as experimental test-based performance evaluation results of the proposed HEFSM show that the motor efficiencies under frequent operating conditions compete with those of the IPMSM installed on TOYOTA fourth-generation PRIUS.
机译:本文涉及一种混合励磁通量开关电动机(HEFSM),采用可变可磁化的永磁体作为混合动力电动车辆的汽车牵引电动机。与传统的HEFSM相比,可以在定子主体上找到差异,该定子体可以在新使用可变可磁化的永磁体,该磁铁加入诸如叠层钢芯,三相电枢线圈,现场激励线圈和恒定磁化的永磁体的传统部件。提高电动机效率的基本概念是基于用可变可磁化的永磁体的现场激励线圈的MMF代替。可变可磁化永磁体的磁化状态根据操作条件适当地调节,导致铜损耗和铁损减量。基于FEA的设计和仿真以及所提出的HEFSM的实验测试的性能评估结果表明,在经常运行条件下的电动机效率与Toyota第四代普锐斯上安装的IPMSM的效率竞争。

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