Battery Storage & Microgrids
Energy storage is what turns intermittent generation into a reliable supply, and a microgrid is what turns a campus, community, or critical facility into something that can run when the grid cannot. The technology has gone from speculative to bankable in the last five years, and the financing structures behind it have caught up. What hasn't caught up in most markets is the design discipline required to make storage and microgrid investments pay back over a twenty-year horizon.
Our work in storage and microgrid design covers the full stack: cell chemistry selection, BESS architecture, controls and dispatch logic, EMS integration, islanding and resync, and the financial modeling that determines whether a project should be sized for resilience, peak shaving, or value-stack arbitrage. We design systems that can run independently when the grid fails and pay for themselves when it doesn't.
Key Capabilities
- Battery energy storage system (BESS) design
- Microgrid architecture, controls, and dispatch logic
- Islanding, resync, and resilience planning
- Peak shaving and demand-charge management
- Integration with solar, wind, hydro, and diesel backup
- Value-stack financial modeling and dispatch optimization
