Renewable generation
Greenfield and repowering opportunities structured for credible interconnection, constructability and long-term operating performance.
- Solar and onshore wind
- Hybrid generation + storage
- Strategic transmission adjacency
DNA Energy
Develop, integrate and operate energy systems that are reliable enough for industry, flexible enough for the grid and accountable to the places they serve.
Energy thesis
A durable energy transition combines generation with flexibility, digital control, transmission awareness and demand that can respond intelligently.
System design begins with the load profile, interconnection reality, land, resource, community context and lifecycle performance requirements.
A systems-first approach combines utility-scale assets, behind-the-meter resources and software around economic performance and operational resilience.
Integrated stack
Solar, wind and fit-for-place firming resources developed against real demand and grid conditions.
Battery and thermal storage shift supply, protect critical loads and support market participation.
Microgrids and distributed resources bring resilience closer to campuses, farms and communities.
Forecasting and controls coordinate assets around cost, demand, reliability and contractual obligations.
Capability areas
Greenfield and repowering opportunities structured for credible interconnection, constructability and long-term operating performance.
Systems that keep critical operations running, reduce peak exposure and turn variable supply into dispatchable capability.
Asset controls, forecasting and portfolio analytics that make complex resources understandable and actionable.
Development principles