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Energy-Efficiency Improvement Potential of Electric Vehicles Considering Transmission Temperature

机译:考虑传输温度的电动汽车的能效改进潜力

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This study presents an integrated energy and transmission thermal management system to quantify the impact of a cold-start on the energy consumption of electric vehicles (EVs) from optimal control perspective. In addition, it provides insights into reducing this cold effect from design point of view. The cold-start conditions in an EV refer to a low transmission temperature, which increases the frictional power losses caused by viscosity effects in the transmission. These losses are eventually compensated by the battery, leading to excess energy usage. A detailed EV model, especially the transmission part with transient thermodynamics based on experiment data, is developed, and the integrated energy and thermal controller aims to maximize the energy efficiency. Numerical results show that a cold-start influences the energy-saving potential, up to 2.9%. Through analysis of temperature-dependent transmission behavior and energy losses of the EV, design considerations of reducing the cold impact, thus improving energy efficiency, can be derived.
机译:本研究提出了一种集成的能量和传输热管理系统,以量化冷启动对电动车辆(EVS)能耗的影响,从最优控制角度来看。此外,它还提供了从设计的观点来降低这种冷效的洞察。 EV中的冷启动条件参考了低传输温度,这增加了通过透射中粘度效应引起的摩擦力损失。这些损失最终由电池补偿,导致能源使用过剩。开发了一种详细的EV模型,特别是基于实验数据的瞬态热力学的传输部分,并且集成的能量和热控制器旨在最大化能量效率。数值结果表明,冷启动会影响节能潜力,高达2.9%。通过分析EV的温度依赖传动行为和能量损失,可以推导出降低冷撞击的设计考虑因素,从而提高能效。

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