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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Design and Analysis of an Electronic-Geared Magnetless Machine for Electric Vehicles
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Design and Analysis of an Electronic-Geared Magnetless Machine for Electric Vehicles

机译:电动汽车用电子齿轮式无磁电机的设计与分析

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摘要

This paper proposes a new electronic-geared (EG) magnetless machine for electric vehicles. The proposed EG machine can offer the multitooth bipolar-flux (MTBF) operation for the low-gear (high-torque low-speed) situation, and the single-tooth unipolar-flux (STUF) operation for the high-gear (low-torque high-speed) situation. In particular, the balance-position winding arrangement is proposed to enable the machine having balanced flux linkages. Consequently, the proposed machine operates as the brushless ac machine for MTBF operation, leading to offer smoother torque at the low-gear situation. Meanwhile, it operates as the brushless dc machine for STUF operation, leading to produce better torque density at the high-gear situation. Various performances of the proposed EG machine are analyzed, with emphasis on the validity of electronic gearing. The experimental prototype is also built for verification.
机译:本文提出了一种用于电动汽车的新型电子齿轮(EG)无磁电机。拟议的EG机器可以为低速(高转矩低速)情况提供多齿双极通量(MTBF)操作,为高速(低速)情况提供单齿单极通量(STUF)操作转矩高速)情况。特别地,提出平衡位置绕组布置以使电机具有平衡的磁链。因此,建议的机器作为MTBF操作的无刷交流机器运行,从而在低速情况下提供了更平滑的扭矩。同时,它用作STUF操作的无刷直流电机,从而在高挡位情况下产生更好的扭矩密度。分析了所提出的EG机器的各种性能,重点是电子齿轮的有效性。实验原型也用于验证。

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