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Energy improvement and performance evaluation of a novel full hybrid electric motorcycle with power split e-CVT

机译:新型动力分配式无级变速器全混合动力电动摩托车的能源改进和性能评估

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摘要

The power split electronic-continuously variable transmission (e-CVT) has been globally accepted as a main architecture for developing a hybrid electric vehicle (HEV). In this paper, a novel full hybrid electric motorcycle with power split e-CVT is proposed. It consists of an engine, a reversible generator, a reversible driving motor, a set of the planetary gear, two one-way clutches, and transmission components arranged for a planetary gearset and dual one-way clutch transmission (PDOC). Three operation modes were properly switched for optimal output dynamics: EV-mode, engine-driven mode, and power split e-CVT mode. Performance simulation compared with that of a baseline system using the conventional rubber-belt CVT is conducted to evaluate its feasibility and potential. The results present superior driving performance and fuel economy for the proposed motorcycle (maximum 32% fuel economy improvement) and thus offer a favorable support for further development.
机译:动力分配电子无级变速器(e-CVT)已被全球广泛接受为开发混合电动汽车(HEV)的主要架构。在本文中,提出了一种新型的具有功率分配e-CVT的全混合电动摩托车。它由发动机,可逆发电机,可逆驱动电动机,一组行星齿轮,两个单向离合器以及为行星齿轮组和双单向离合器变速器(PDOC)安排的变速箱组件组成。为了最佳的输出动态,正确地切换了三种操作模式:EV模式,发动机驱动模式和功率分配e-CVT模式。与使用常规橡胶皮带式CVT的基准系统相比,进行了性能模拟,以评估其可行性和潜力。结果为拟议的摩托车提供了卓越的驾驶性能和燃油经济性(最大燃油经济性提高了32%),从而为进一步的发展提供了有利的支持。

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