Completed Clean Energy Engineering

Conductor

In plain English

AI plain-English summary

The UK’s rail network pulls huge surges of electricity from the grid at peak times, but the expensive high-capacity connections that supply that power sit mostly idle the rest of the day. This matters because those connections—called Traction Bulk Supply Points—are built to handle short, intense bursts of demand, not steady use. That mismatch wastes capacity that could otherwise serve nearby homes, businesses, or renewable generators. At the same time, grid operators struggle to balance supply and demand in areas where the network is constrained, and renewable projects are sometimes curtailed—switched off—because there is nowhere to send the power they generate. The Conductor project proposes installing battery storage at these rail supply points and rewriting connection agreements to allow two-way power flow. Batteries would charge during off-peak periods and discharge to meet train demand when it spikes, shifting the load away from peak grid times. That freed capacity could then be sold to other grid users, used to provide local flexibility services, or opened up to new renewable generation that would otherwise be curtailed. If it works, the approach could turn a single-purpose, underused piece of rail infrastructure into a multi-use grid asset—without building new power lines.

View original technical description
Traction Bulk Supply Points are large capacity grid connections designed to support peak demand on the rail traction system. Because traction power is typically very peaky in nature this capacity is not optimally utilised. Installing battery storage facilities at traction BSPs and unlocking connection agreements to enable two-way dynamic flow could shift rail energy demand away from peak periods, unlocking capacity for other customers; support regional balancing of supply and demand; fulfil unmet demands for flexibility services in areas with network constraints; and increase the commercial scope for new traction-connected generation capacity, replacing curtailment with load shifting and export capability.

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Original classification

Feasibility Studies

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