Completed Clean Energy Food & Agriculture

E-FLEX - Real-world Energy Flexibility through Electric Vehicle Energy Trading

In plain English

AI plain-English summary

Every electric vehicle could become a mini power station, selling energy back to the grid when not in use. The E-FLEX project tackles a stubborn problem: how to create a real market that makes this vehicle-to-grid (V2G) trading profitable for both fleet operators and energy users. Without a working market mechanism, the potential for EVs to act as mobile batteries and cut carbon emissions remains theoretical. The team will run a large-scale demonstration involving 200 electric vehicles from London fleets—parcel delivery vans, car-sharing cars, police vehicles, and health service vehicles. These vehicles have different daily schedules and charging needs, which mirrors real-world complexity. The first phase tests fixed scheduling against known energy demand; the second phase shifts to near-real-time market trading. Researchers will monitor every vehicle’s use, charging cycles, battery performance, and the costs and value captured. If successful, E-FLEX could prove that a functioning V2G market is viable, turning parked EVs into a flexible energy resource that supports the grid, reduces carbon, and generates revenue for operators—without compromising their primary job of moving people and goods.

View original technical description
The promise of flexible mobile energy storage & supply through V2G is no less than to turn each vehicle into a net carbon reducer. The challenge is to create a market mechanism that allows these benefits to be realised with business cases for EV operators and grid/energy users. E-FLEX will create a scale demonstration of a functioning V2G market. It will combine a number of fleets with variable duty cycles, a mixed hardware ecology, and diverse energy users (grid plus facilities) with a market design that captures as much value as possible as private benefit. E-FLEX will involve a mix of urban (London) fleets (parcel delivery, car sharing, police and heath service vehicles), totalling 200 EVs. The first phase will be oriented at fixed scheduling against known end user demand. The second phase will demonstrate a dynamic (near-real time) market operation. Vehicle use and V2G cycles will be fully monitored for analysis of market operation, including adoption, use, cost of operation, value captured, and battery and vehicle performance.

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Related Research

Grants with similar aims, by meaning.

V2GB – Vehicle to Grid Britain
V2go
V2X-Flex: Unlocking the energy flexibility potential of domestic bi-directional EV charging technology
VEhiCle TO eneRgy communitieS (VECTORS)
e4Future

Original classification

Collaborative R&D

Plain English summaries and category classifications on this site are generated by AI and may not perfectly reflect the original research.