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Vehicle attribute trade-offs to meet the 2025 CAFE fuel economy target

机译:车辆属性权衡以实现2025年CAFE燃油经济性目标

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摘要

The literature analyzes changes in vehicle attributes that can improve fuel economy to meet Corporate Average Fuel Economy (CAFE) standards. However, these analyses exclude either vehicle price, size, acceleration or technology advancement. A more comprehensive examination of the trade-offs among these attributes is needed, this case study focuses on technically feasible modifications to a reference 2012 vehicle to meet the 2025 fuel economy target. Scenarios developed to examine uncertainty in technology advancement indicate that expected technology cost reductions over time will be insufficient to offset the costs of additional fuel efficiency technologies that could be used to meet the 2025 fuel economy target while maintaining other vehicle attributes. The mid-price scenario results show the targeted 66% increase in fuel economy from 2012 to 2025 can be achieved with (i) a 10% ($2070) vehicle price increase (lightweight hybrid electric vehicle), (ii) a 31% (2.9 second) increase in the 0-97 km/h (60 mph) acceleration time (smaller engine), or (iii) a 17% (700 L) decrease in interior volume (smaller body) while maintaining other vehicle attributes. These results are consistent with those obtained using methods that generalize the US light-duty vehicle fleet, but are not a forecast of future vehicle attributes because combinations of less perceptible changes to vehicle price, acceleration and size would also be feasible. This study shows there are numerous ways that 2025 fuel economy targets can be met; therefore, the trade-offs quantified provide important insights on the implications of future CAFE standards. (C) 2016 Elsevier Ltd. All rights reserved.
机译:文献分析了可改善燃油经济性以满足公司平均燃油经济性(CAFE)标准的车辆属性变化。但是,这些分析不包括车辆价格,尺寸,加速度或技术进步。需要对这些属性之间的折衷进行更全面的研究,本案例研究的重点是对2012年参考车型进行技术上可行的修改,以实现2025年燃油经济性目标。为检验技术进步的不确定性而开发的方案表明,随着时间的推移,预期的技术成本降低将不足以抵消可用于满足2025年燃油经济性目标并同时保持其他车辆特性的其他燃油效率技术的成本。中端价格情景结果显示,通过(i)车辆价格上涨10%($ 2070)(轻型混合动力汽车),(ii)31%(2.9)可以实现2012年至2025年燃油经济性目标提高66%第二)加速时间增加0-97 km / h(60 mph)(较小的发动机),或(iii)保持内部容积减小17%(700 L)(较小的车身),同时保持其他车辆属性。这些结果与使用对美国轻型汽车车队进行一般化的方法所获得的结果一致,但由于对汽车价格,加速度和尺寸的感知变化较小,因此组合起来也是可行的,因此无法预测未来的汽车属性。这项研究表明,有许多方法可以实现2025年的燃油经济性目标。因此,量化的权衡可以对未来CAFE标准的含义提供重要的见解。 (C)2016 Elsevier Ltd.保留所有权利。

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  • 来源
    《Transportation Research》 |2016年第12期|154-171|共18页
  • 作者单位

    Univ Toronto, Dept Civil Engn, 35 St George St, Toronto, ON M5S 1A4, Canada;

    Univ Toronto, Dept Chem Engn & Appl Chem, 200 Coll St, Toronto, ON M5S 3E5, Canada;

    Univ Toronto, Dept Civil Engn, 35 St George St, Toronto, ON M5S 1A4, Canada|Univ Toronto, Dept Chem Engn & Appl Chem, 200 Coll St, Toronto, ON M5S 3E5, Canada;

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