Driving Profiles of Light Commercial Vehicles of Craftsmen and the Potential of Battery Electric Vehicles When Charging on Company Premises

IF 2.6 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC World Electric Vehicle Journal Pub Date : 2024-05-10 DOI:10.3390/wevj15050211
Oliver Heilmann, Britta Bocho, Alexander Frieß, Sven Cortès, Ulrich Schrade, André Casal Kulzer, Michael Schlick
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Abstract

This paper examines the extent to which it is possible to replace conventional light commercial vehicles in the heating, ventilation and air conditioning and plumbing trade with battery electric vehicles with an unchanged usage profile. GPS trackers are used to record the position data of 22 craft vehicles with combustion engines from eleven companies over the duration of one working week. Within this paper, various assumptions (battery capacity and average consumption) are made for battery electric vehicles and the charging power on the company premises. The potential of battery electric vehicles is evaluated based on the assumption that they are charged only on company premises. Using the collected data and the assumptions made, theoretical state of charge curves are calculated for the vehicles. The driving profiles of the individual vehicles differ greatly, and the suitability of battery electric vehicles should be considered individually. Battery capacity, vehicle energy consumption and charging power at the company have a substantial influence on the suitability of battery electric vehicles. Furthermore, there are differences between vehicles that can charge on the company premises at night and those that cannot or can only do so on some days.
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技工驾驶轻型商用车的情况以及电池电动车在公司场所充电的潜力
本文探讨了在使用情况不变的情况下,用电池电动车取代供暖、通风、空调和管道行业的传统轻型商用车辆的可能性。本文使用 GPS 跟踪器记录了 11 家公司的 22 辆内燃机汽车在一个工作周内的位置数据。本文对电池电动车和公司场所的充电功率做了各种假设(电池容量和平均消耗量)。假定电池电动汽车只在公司场所充电,以此评估电池电动汽车的潜力。利用收集的数据和所做的假设,计算出车辆的理论充电状态曲线。每辆车的行驶情况差异很大,因此应单独考虑电池电动汽车的适用性。电池容量、车辆能耗和公司的充电功率对电池电动汽车的适用性有很大影响。此外,可以在夜间在公司所在地充电的车辆与不能或只能在某些日子充电的车辆之间也存在差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
World Electric Vehicle Journal
World Electric Vehicle Journal Engineering-Automotive Engineering
CiteScore
4.50
自引率
8.70%
发文量
196
审稿时长
8 weeks
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