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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >An innovative thermal management method for cooling loop of electric driving system for durable and high efficiency electric vehicle
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An innovative thermal management method for cooling loop of electric driving system for durable and high efficiency electric vehicle

机译:一种用于耐用高效电动车辆电驱动系统冷却回路的创新热管理方法

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摘要

This paper proposed an innovative thermal management framework and its control strategies for the cooling loop of electric drive to achieve a more refined thermal management. To investigate the performance of this method used in EVs, the proposed innovative framework model and the conventional framework of the cooling loop of electric drive were developed in KULI based on the heating principle and heat transfer theory. And the rule-based control strategies were established in MATLAB/Simulink, which was set as a controller to regulate fan, pump and proportional valve. Then, the cooling performance and the energy consumption of the two frameworks were compared through co-simulation under steady-state and transient conditions of high temperature. The results showed that this method has a better performance in temperature control of key components (exit temperature of motor is reduced by at least 5.0 degrees C under 3 steady-stage simulation conditions) and improved efficiency of the pump (from 6.4% to 10.1% in mode 1, from 15.2% to 23.6% in mode 2, and from 21.4% to 36.8% in mode 3), which is useful to achieve long lifetime and high efficiency of electric vehicles.
机译:本文提出了一种创新的电力驱动冷却回路热管理框架及其控制策略,以实现更精细的热管理。为了研究这种方法在电动汽车中的性能,基于加热原理和传热理论,在库里开发了电动汽车冷却回路的创新框架模型和传统框架。并在MATLAB/Simulink中建立了基于规则的控制策略,将其设置为调节风机、泵和比例阀的控制器。然后,通过联合仿真比较了两种框架在稳态和瞬态高温条件下的冷却性能和能耗。结果表明,该方法在关键部件的温度控制方面具有较好的性能(在3种稳态模拟条件下,电机出口温度至少降低5.0℃),提高了泵的效率(模式1从6.4%提高到10.1%,模式2从15.2%提高到23.6%,模式3从21.4%提高到36.8%),这有助于实现电动汽车的长寿命和高效率。

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