助力还是阻碍?高度自动化汽车的出行、能源和碳影响

Help or hindrance? The travel, energy and carbon impacts of highly automated vehicles

Transportation Research Part A Policy and Practice · 2016
被引 845 · 同刊同年前 1%
ABS 3

中文导读

本文识别了自动化汽车影响出行和能源需求的机制,量化了各机制对美国轻型及重型车辆温室气体排放的潜在影响,发现自动化可能使排放减半或翻倍,部分节能效益在部分自动化时即可实现,而主要风险在完全自动化时更突出。

Abstract

Experts predict that new automobiles will be capable of driving themselves under limited conditions within 5-10 years, and under most conditions within 10-20 years. Automation may affect road vehicle energy consumption and greenhouse gas (GHG) emissions in a host of ways, positive and negative, by causing changes in travel demand, vehicle design, vehicle operating profiles, and choices of fuels. In this paper, we identify specific mechanisms through which automation may affect travel and energy demand and resulting GHG emissions and bring them together using a coherent energy decomposition framework. We review the literature for estimates of the energy impacts of each mechanism and, where the literature is lacking, develop our own estimates using engineering and economic analysis. We consider how widely applicable each mechanism is, and quantify the potential impact of each mechanism on a common basis: the percentage change it is expected to cause in total GHG emissions from light-duty or heavy-duty vehicles in the U.S. Our primary focus is travel related energy consumption and emissions, since potential lifecycle impacts are generally smaller in magnitude. We explore the net effects of automation on emissions through several illustrative scenarios, finding that automation might plausibly reduce road transport GHG emissions and energy use by nearly half – or nearly double them – depending on which effects come to dominate. We also find that many potential energy-reduction benefits may be realized through partial automation, while the major energy/emission downside risks appear more likely at full automation. We close by presenting some implications for policymakers and identifying priority areas for further research.

交通工程环境经济学能源消耗温室气体排放自动化技术