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DEVELOPMENT OF AN AUXILIARY MODE POWERTRAIN FOR HYBRID ELECTRIC SCOOTER

机译:混合动力电动滑板车辅助动力总成的研制

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摘要

This paper proposes a design and implementation of an auxiliary mode, hybrid electric scooter (HES) by means of more cost-effective way for improving scooter's performance and efficiency. The HES is built in a parallel hybrid configuration with a 24V 370W auxiliary power electric motor, a 24V 20AH battery, and an electronically controlled fuel injection internal combustion engine (ICE) scooter. In contrast to hybrid electric vehicles (HEVs), the issues concerning cost, volume, and reliability are even more rigorous when developing hybrid electric scooters (HESs). Therefore, the drive topology and control strategy used in HEV cannot be applied to HES directly. In order to hasten the developing phase and achieve the parametric tune-up of the HES component, a dynamic simulation model for the HES is developed here. Because the powertrain system is complex and nonlinear in nature, the simulation model utilizes mathematical models in tandem with accumulated experimental data. The method about the mathematical model construction, analysis and simulation of the hybrid powertrain used in a scooter are fully described. The efficacy of the model was verified experimentally on a scooter chassis dynamometer and the performance of the proposed hybrid powertrain is studied using the developed model under a representative urban driving cycle. Finally, Simulation and experimental results confirm the feasibility and prosperity of the proposed hybrid HES and indicate that the designed hybrid system can improve the fuel consumption rate up to 15% compared with the original scooter.
机译:本文提出了一种辅助模式的混合动力电动踏板车(HES)的设计和实现,该方法通过更具成本效益的方式来提高踏板车的性能和效率。 HES采用并联混合动力配置,配有24V 370W辅助动力电动机,24V 20AH电池和电控燃油喷射内燃发动机(ICE)踏板车。与混合动力电动汽车(HEV)相比,在开发混合动力电动踏板车(HES)时,有关成本,体积和可靠性的问题更加严格。因此,HEV中使用的驱动器拓扑和控制策略无法直接应用于HES。为了加快开发阶段并实现HES组件的参数调整,在此开发了HES的动态仿真模型。由于动力总成系统本质上是复杂且非线性的,因此仿真模型将数学模型与积累的实验数据结合起来使用。全面描述了用于踏板车的混合动力系统的数学模型构建,分析和仿真的方法。在踏板车底盘测功机上通过实验验证了该模型的有效性,并使用开发的模型在有代表性的城市驾驶周期下研究了提出的混合动力总成的性能。最后,仿真和实验结果证实了所提出的混合动力HES的可行性和繁荣性,并表明所设计的混合动力系统可将燃油消耗率提高至原始踏板车的15%。

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