Cao, Yue, Cui, Jixing, Liu, Shuohan, Zhang, Xu
ORCID: https://orcid.org/0000-0001-6557-6607, Xu, Lexi and Sun, Hongjian
(2026)
A reservation-based hybrid electric vehicle energy supply system via direct and asynchronous vehicle-to-vehicle charging modes.
International Journal of Electrical Power and Energy Systems, 176.
ISSN 0142-0615
Preview |
PDF (1-s2.0-S0142061526001468-main)
- Published Version
Available under License Creative Commons Attribution. Download (2MB) | Preview |
Abstract
Electric vehicles, powered by environmentally-friendly electricity, are rapidly emerging as a sustainable alternative to traditional fuel vehicles. However, challenges like range anxiety, stemming from their limited range and prolonged charging times, hinder their widespread adoption. Traditional plug-in charging, limited by rigid charging station deployments, often fails to address the dynamic needs of drivers. To solve this, a novel direct vehicle-to-vehicle charging approach via parking locations has been introduced. In this setup, vehicles act both as energy consumers and providers, forming dynamic peer-to-peer charging pairs. While the direct vehicle-to-vehicle mode is flexible, its effectiveness is curtailed by its inherently low charging power. To remedy this, this paper proposes an asynchronous vehicle-to-vehicle charging scheme via power-storage stations, which are equipped with high-capacity batteries and robust converters. Moreover, this paper proposes a reservation-based hybrid vehicle-to-vehicle charging scheme that integrates both charging modes. Using a real-time reservation system, it can precisely forecast occupancy at parking locations and power-storage stations, ensuring optimal charging by employing the shortest finish time strategy. Simulations validate the efficacy of the proposed scheme, highlighting significant improvements in reducing waiting times and increasing the number of fully charged vehicles compared to existing methods, while buffering energy and shifting service away from demand peaks to support peak shaving and improved asset utilization.
| Item Type: | Article |
|---|---|
| Additional Information: | Data availability: Data will be made available on request |
| Uncontrolled Keywords: | electric energy,electric vehicle (ev),ev charging optimization,hybrid v2v charging,vehicle-to-vehicle (v2v) charging,energy engineering and power technology,electrical and electronic engineering ,/dk/atira/pure/subjectarea/asjc/2100/2102 |
| Faculty \ School: | Faculty of Science > School of Computing Sciences |
| UEA Research Groups: | Faculty of Science > Research Groups > Cyber Intelligence and Networks Faculty of Science > Research Groups > Smart Emerging Technologies (former - to 2025) |
| Related URLs: | |
| Depositing User: | LivePure Connector |
| Date Deposited: | 17 Sep 2026 16:11 |
| Last Modified: | 20 Sep 2026 05:26 |
| URI: | https://ueaeprints.uea.ac.uk/id/eprint/104582 |
| DOI: | 10.1016/j.ijepes.2026.111704 |
Downloads
Downloads per month over past year
Actions (login required)
![]() |
View Item |
Tools
Tools