Local Energy
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Energy networks already contain the heat, the flexibility and the value they need. What is missing is the intelligence to coordinate them in real time.
What We Do
Local Energy models, optimizes and controls complex energy networks to reduce operating costs, unlock new sources of revenue and lower emissions. From early design to real-time operations, one intelligence layer continuously finds the best way for the system to perform.
Energy Efficiency
Use less energy. Operate the whole system better.
Digital twins, machine learning and real-time control continuously find better ways to operate the system. Reduce energy consumption and energy bills while maintaining the same output, often without adding new equipment.
Flexibility
Turn existing energy assets into new revenue.
Use the flexibility already present in heat, storage and electrical loads to shift when energy is consumed, produced or stored. Reduce peaks, participate in demand-side management and capture utility flexibility revenues without compromising operations. The forecast that tells you how to run the network also tells you when load can move without touching production.
Decarbonization
Reduce emissions through better operation.
Reduce fuel and electricity consumption, favour lower-carbon energy sources when available, and shift demand toward cleaner periods. Local Energy makes carbon performance an operating objective, continuously optimized alongside cost and reliability.
What Makes It Possible
1
Collaboration
An energy network is rarely owned, designed and operated by the same people. Coordinating them requires one model all of them can work from.

2
Intelligence
We combine live data, machine learning, and physical systems thinking to find value others can’t see.

3
Impact
Every smarter energy decision can lower emissions, cut cost, and unlock new flexibility revenue.

Our Technology
The AI-Driven
operating system for
tomorrow’s energy networks.
A single engine combining machine learning, predictive control and energy engineering, developed in partnership with Mila, a world-leading AI institute.
How We Work
Every engagement runs the same four steps. A project still on paper starts at the first. A site already operating usually starts at the third.
MODEL
One model of the whole system. Assets, flows, loads, constraints, costs. Grounded in equipment physics and measured data, calibrated to the site.
DESIGN
Get it right before it is built. Sizing, technology, storage, financials. Optimize across cost, emissions and constraints, tested against real weather and prices with a long term scope.
ACT
Take real-time control. Most brownfield engagements start here. Boilers, chillers, storage, cogeneration, electrical loads. Forecast and dispatched together on sites already running, through the systems already installed.
MONETIZE
Turn the system into new revenue from assets you already own. Peak shaving, demand side management and flexibility programs. Measured against a verified baseline.
Let's Get to Work




