电气化
卡车
重型的
汽车工程
工程类
环境科学
重载
电
运输工程
电气工程
结构工程
作者
Brennan Borlaug,Matteo Muratori,Madeline Gilleran,David Woody,William E. Muston,Thomas Canada,A. Ingram,Hal Gresham,Charlie McQueen
出处
期刊:Nature Energy
[Nature Portfolio]
日期:2021-06-21
卷期号:6 (6): 673-682
被引量:109
标识
DOI:10.1038/s41560-021-00855-0
摘要
Major technological advancements and recent policy support are improving the outlook for heavy-duty truck electrification in the United States. In particular, short-haul operations (≤200 miles (≤322 km)) are prevalent and early candidates for plug-in electric vehicles (EVs) given their short, predictable routes and return-to-base applications, which allows vehicles to recharge when off shift at their depots. Although previous studies investigated the impacts of added electrical loads on distribution systems, which included light-duty EVs, the implications for heavy-duty EV charging are underexplored. Here we summarize the causes, costs and lead times of distribution system upgrades anticipated for depot charging. We also developed synthetic depot charging load profiles for heavy-duty trucks from real-world operating schedules, and found that charging requirements are met at common light-duty EV charging rates (≤100 kW per vehicle). Finally, we applied depot charging load profiles to 36 distribution real-world substations, which showed that most can accommodate high levels of heavy-duty EV charging without upgrades. Increasing attention is being paid to the electrification of trucks, in particular for short-haul operations. Borlaug et al. simulate depot charging load profiles based on real-world operating schedules to explore future charging requirements and assess the likely distribution substation upgrades needed to support them.
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