An Urban Electric Vehicle Charging System via Hybrid Heterogeneous Modes

Zhang, Keyang, Liu, Yueheng, Liu, Shuohan, Gao, Junqiao, Cao, Yue, Ahmad, Naveed and Zhang, Xu (2025) An Urban Electric Vehicle Charging System via Hybrid Heterogeneous Modes. In: 2024 IEEE International Conference on Systems, Man, and Cybernetics, SMC 2024 - Proceedings. Conference Proceedings - IEEE International Conference on Systems, Man and Cybernetics . The Institute of Electrical and Electronics Engineers (IEEE), MYS, pp. 1469-1476. ISBN 9781665410205

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Abstract

Electric Vehicle (EV) is regarded as the optimal alternative to traditional fuel-powered vehicles. However, the exponential surge in EV charging demand poses challenges in charging infrastructure planning and charging behavior management. The efficacy of traditional Grid-to-Vehicle (G2V) charging mode, which obtains power from the grid, is curtailed by the limited number and uneven distribution of charging facilities, inevitably leading to charging congestion. Instead, the concept of Vehicle-to-Vehicle (V2V) charging has emerged as a spatio-temporally flexible charging mode, which expands EV's role from consumer to provider, forming V2V pairs and utilizing urban Parking Lots (PLs) as charging locations. In this paper, we propose a Hybrid Heterogeneous Modes (HHM)-based EV charging optimization scheme in urban settings. Building upon the G2V mode, we introduce synchronous and asynchronous V2V charging modes as optimization strategies, integrating and exploiting the unique advantages of each mode. We also utilize global EV charging scheduling and comprehensively take four dimensions into consideration (energy trading cost, travel cost, waiting time cost and loss cost), thus achieving flexible mode selection, V2V pairing, and designated charging locations. Simulations confirm the effectiveness of the proposed scheme in reducing total charging costs, optimizing user service experiences, and improving charging facility utilization rates.

Item Type: Book Section
Additional Information: Publisher Copyright: © 2024 IEEE.
Uncontrolled Keywords: electrical and electronic engineering,control and systems engineering,human-computer interaction,sdg 11 - sustainable cities and communities ,/dk/atira/pure/subjectarea/asjc/2200/2208
Faculty \ School: Faculty of Science > School of Computing Sciences
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Depositing User: LivePure Connector
Date Deposited: 01 May 2025 10:30
Last Modified: 04 May 2025 06:30
URI: https://ueaeprints.uea.ac.uk/id/eprint/99162
DOI: 10.1109/SMC54092.2024.10831814

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