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The impact of range anxiety and home, workplace, and public charging infrastructure on simulated battery electric vehicle lifetime utility

机译:范围焦虑以及家庭,工作场所和公共充电基础设施对模拟电池电动汽车寿命效用的影响

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Battery electric vehicles (BEVs) offer the potential to reduce both oil imports and greenhouse gas emissions, but have a limited utility due to factors including driver range anxiety and access to charging infrastructure. In this paper we apply NREL's Battery Lifetime Analysis and Simulation Tool for Vehicles (BLAST-V) to examine the sensitivity of BEV utility to range anxiety and different charging infrastructure scenarios, including variable time schedules, power levels, and locations (home, work, and public installations). We find that the effects of range anxiety can be significant, but are reduced with access to additional charging infrastructure. We also find that (1) increasing home charging power above that provided by a common 15 A, 120 V circuit offers little added utility, (2) workplace charging offers significant utility benefits to select high mileage commuters, and (3) broadly available public charging can bring many lower mileage drivers to near-100% utility while strongly increasing the achieved miles of high mileage drivers.
机译: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,但由于包括驾驶员对驾驶范围的担忧和使用充电基础设施等因素,其实用性有限。在本文中,我们使用NREL的车辆电池寿命分析和模拟工具(BLAST-V)来研究BEV实用程序对范围焦虑和不同充电基础设施场景(包括可变的时间表,功率水平和位置(住所,工作地点,和公共设施)。我们发现,范围焦虑的影响可能很大,但是可以通过使用其他充电基础设施来降低。我们还发现(1)将家庭充电功率提高到高于普通15 A,120 V电路所提供的功率,几乎没有增加实用性;(2)工作场所充电为选择高里程通勤者提供了显着的实用性优势;(3)广泛使用的公共场所充电可以使许多行驶里程较低的驾驶员达到接近100%的效用,同时极大地增加了行驶里程较高的驾驶员的行驶里程。

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