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AIRVOLT

Smart energy

Intelligence is the difference between hardware and a system.

Identical equipment in two identical houses can differ by 40 % in annual cost. The variable is control.

Capabilities

Twenty layers of energy intelligence.

Smart homes

Energy, climate, lighting, shading and charging orchestrated as one system.

Home energy management

A controller that decides, not a dashboard that reports.

Artificial intelligence

Consumption patterns learned per household, re-planned nightly.

Predictive management

Tomorrow's prices and irradiance drive tonight's decisions.

Dynamic pricing

Hourly tariffs turn a battery into a trading asset.

Battery optimisation

Charge and discharge scheduled against price, forecast and reserve.

Load forecasting

Per-circuit prediction that makes scheduling reliable.

Weather integration

Irradiance and storm forecasts feed reserve and pre-charge logic.

Smart scheduling

Hot water, pool, climate and vehicle moved into the cheapest hours.

Peak load reduction

The single expensive quarter-hour that sets your capacity charge, flattened.

Demand response

Paid participation in network support events.

Virtual power plants

Thousands of batteries dispatched as one resource.

Microgrids

Grid-forming control with seamless islanding.

Community energy

Collective self-consumption with per-dwelling allocation.

Net metering

Compensation frameworks and how to design around them.

Self-consumption

The highest-value kilowatt-hour is the one you never export.

Grid independence

A measurable score, not a slogan.

Off-grid systems

Autonomy days, worst-month sizing and honest generator planning.

Backup power

Circuit schedules designed before commissioning, not during.

Energy analytics

Circuit-level data, anomaly detection and audit-ready reporting.

Interactive

What would your independence score be?

Consumption, generation and storage combine into a single number that tells you whether the design worked.

Energy Independence Calculator

The single number that tells you whether the design worked: what share of your consumption comes from your own roof and battery.

9,000 kWh
8 kWp
13.5 kWh
Independence score
91%
Grid import
774 kWh/yr
Exported surplus
3,374 kWh/yr
CO₂ avoided
2.3 t/yr
Storage
13.5 kWh

Let's engineer your energy system.

Send us a year of electricity bills and a photo of your roof. We return a full engineering proposal with modelled production, savings and payback.