4.5 Article

Analyzing the Charging Flexibility Potential of Different Electric Vehicle Fleets Using Real-World Charging Data

期刊

ENERGIES
卷 14, 期 16, 页码 -

出版社

MDPI
DOI: 10.3390/en14164961

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electric vehicles; vehicle grid integration; charging flexibility; data analysis; optimization; smart charging

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This paper investigates the temporal and power-specific flexibility behavior of three different vehicle fleets: office employees, a public authority, and a logistics company. The analysis reveals that the logistics site has the highest charging flexibility and the most homogeneous charging profile, which is significant for future applications in smart charging and ancillary services provision.
A successful transformation of the energy and transportation sector is one of the main targets for our society today. Battery electric vehicles can play a key role in future renewable-based energy supply systems because of their ability to store electrical power. Additionally, they provide significant charging flexibility due to the long parking durations. In this paper, we provide insights into the temporal and power-specific flexibility behavior of three different vehicle fleets. These fleets are pool vehicles of office employees, a public authority, and a logistics company. Several parameters, such as the average charging power per charging event or the average plug-in duration per charging event, are discussed. Additionally, we investigate different charging rates and their impact on the temporal flexibility of the charging events. The data analysis shows that the logistics site has the most homogeneous charging profile as well as high charging flexibility, in contrast to the office and public agency site. The results are of significant importance for future applications in the field of smart charging and ancillary services provision.

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