纯电动汽车参数设计以成本效益为目标

Jiuyu Du, M. Ouyang, Hewu Wang
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引用次数: 13

摘要

发展电动汽车可以大幅降低原油消耗和碳排放,从而解决中国的能源危机和气候变化问题。电动汽车需要大型电池来存储能量,这影响了电动汽车的成本、重量和性能。更多的全电动里程(AER)意味着更多的化石燃料的取代,但也会导致价格过高,中国消费者负担不起。在性能和成本之间进行权衡的电动汽车设计方法是很有价值的。本文讨论了以成本效益为目标的参数优化设计方法。在对车辆日行驶公里数(VKDT)、占空比等调查数据分析的基础上,分析了最大车速、AER对能源效率和市场竞争力的影响,并建立了考虑附加电池对燃料消耗、成本等影响的数学模型。可以发现,在中国,当每日充电时,AER为50km或以下,使用平均小容量电动汽车比传统汽车更便宜,排放的温室气体也更少。通过成本效益分析,可以得出对于第一代纯电动汽车来说,微尺寸电动适合第一阶段的发展。
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Battery electric vehicle parameters design targeting to cost-benefit objective
Developing electric vehicle can reduce crude oil consumption and carbon emission sharply to resolve the problems of energy crisis and climate change of China. EVs require large batteries for energy storage, which affect electric vehicle cost, weight, and performance. More all electric range (AER) means more dispalcement of the fosill fuel, but lead to too expensive to afford for China's consumers. The electric vehicle design method to tadeoff between performance and cost is very valuable.This paper discussed the parameter optimization design method targeting cost-benefit objective. It analyses the impact of maximum speed, AER on energy efficiency and market competitiveness, based the survey data annalysis of vehicle kilometers daily traveled(VKDT), duty cycle analysis, etc.The mathematic model was proposed to account for the effects of additional batteries on fuel consumption, cost, etc. It can be find that when charged daily, AER of 50km or less, in China, using average small-capacity EVs is less expensive and releases fewer GHGs than conventional vehicles (CVs). By cost-benefit analysis, it can be concluded that for the first generation pure electric vehicle, the micro-size electric suitable for the first phase of development.
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