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A novel power-train using coaxial magnetic gear for power-split hybrid electric vehicles

机译:一种使用同轴电磁齿轮的新型动力总成混合动力汽车动力总成

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This paper proposes a novel power-train for power-split hybrid electric vehicles (HEVs). The key is to integrate two permanent magnet motor/generators (M/Gs) together with a coaxial magnetic gear (CMG). By designing the modulating ring of the CMG to be rotatable, this integrated machine can achieve both power splitting and mixing, and therefore, can seamlessly match the vehicle road load to the engine optimal operating region. With the one-side-in and one-side-out structure and the non-contact transmission of the CMG, all the drawbacks aroused by the mechanical gears and chain existing in the traditional power-train system can be overcome. Moreover, the proposed power-train possesses the merits of small size and light weight, which are vitally important for extending the full-electric drive range of HEVs. The working principle and the design details are elaborated. By using the finite element method, the electromagnetic characteristics are analyzed. Finally, system modeling and simulation are conducted to evaluate the proposed system.
机译:本文提出了一种用于动力分配混合动力电动汽车(HEV)的新型动力总成。关键是将两个永磁电动机/发电机(M / Gs)与一个同轴电磁齿轮(CMG)集成在一起。通过将CMG的调节环设计为可旋转,此集成式机器既可以实现功率分配又可以实现混合,因此可以使车辆的道路负载与发动机的最佳工作区域无缝匹配。借助CMG的一进一出结构和非接触式变速箱,可以克服传统动力总成系统中存在的机械齿轮和链条所引起的所有弊端。此外,提出的动力总成具有体积小,重量轻的优点,这对于扩大混合动力汽车的全电驱动范围至关重要。阐述了工作原理和设计细节。通过使用有限元方法,分析了电磁特性。最后,进行系统建模和仿真以评估所提出的系统。

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