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首页> 外文期刊>Journal of power sources >Thru-life impacts of driver aggression, climate, cabin thermal management, and battery thermal management on battery electric vehicle utility
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Thru-life impacts of driver aggression, climate, cabin thermal management, and battery thermal management on battery electric vehicle utility

机译:驾驶员侵略性,气候,车厢热管理和电池热管理对电池电动汽车的一生影响

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摘要

Battery electric vehicles (BEVs) offer the potential to reduce both oil imports and greenhouse gas emissions, but have a limited utility that is affected by driver aggression and effects of climate-both directly on battery temperature and indirectly through the loads of cabin and battery thermal management systems. Utility is further affected as the battery wears through life in response to travel patterns, climate, and other factors. In this paper we apply the National Renewable Energy Laboratory's Battery Lifetime Analysis and Simulation Tool for Vehicles (BLAST-V) to examine the sensitivity of BEV utility to driver aggression and climate effects over the life of the vehicle. We find the primary challenge to cold-climate BEV operation to be inefficient cabin heating systems, and to hot-climate BEV operation to be high peak on-road battery temperatures and excessive battery degradation. Active cooling systems appear necessary to manage peak battery temperatures of aggressive, hot-climate drivers, which can then be employed to maximize thru-life vehicle utility.
机译:电池电动汽车(BEV)具有减少石油进口和减少温室气体排放的潜力,但其实用性有限,它受到驾驶员的攻击和气候影响的影响-既直接影响电池温度,又间接影响车厢和电池热负荷管理系统。由于电池会因旅行方式,气候和其他因素而终生磨损,因此实用性进一步受到影响。在本文中,我们使用了国家可再生能源实验室的车辆电池寿命分析和模拟工具(BLAST-V),研究了BEV实用程序在车辆使用寿命中对驾驶员的攻击和气候影响的敏感性。我们发现冷气候BEV运行面临的主要挑战是效率低的车厢供暖系统,而热气候BEV运行面临的挑战是公路电池峰值温度过高和电池过度退化。主动冷却系统似乎对于管理侵略性,热气候驾驶员的电池峰值温度是必不可少的,然后可以利用它来最大化车辆的使用寿命。

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