Conceptual composition connecting a satellite, irrigated cropland and solar energy

Space. Intelligence. Energy.

Satellites, sensors and energy, connected to your farm.

Measured savings, not forecasts.

One Aerospace Canada builds a data and monitoring platform for irrigated farms. It connects satellite imagery, field sensors and machine telemetry to the energy that runs the farm, and reports the result in litres of diesel, cubic metres of water and kilowatt-hours per hectare.

L diesel / ham³ water / hakWh / ha irrigated

Platform in development · pilot conversations open

Calgary, Alberta Subsidiary of One Energy Canada Inc. Incorporated Sept 2026

Conceptual illustration, AI-generated

The problem

Farm software stops at the farm gate.

Imagery platforms tell you where the crop is struggling. Energy contractors size the pump and the panels. The two rarely meet, even on an irrigated farm, where they are the same decision.

Whether to run a pivot tonight depends on the soil, the forecast and what the energy costs at that hour. If that energy comes from a diesel generator, the decision also shows up in the fuel tank. Today those answers sit in four different places, and none of them talk to each other.

Agronomy platforms

Where the crop is stressed

Imagery and field data. They usually report energy use at best. Most don't produce it or control when it runs.

The gap

When to pump, and at what cost

Soil moisture, forecast, fuel and power price in one schedule per pivot. This is where One AgroGrid sits.

Energy contractors

How much power the pumps need

Sized once, at installation. After that they rarely see the crop, the water or the diesel invoices.

One AgroGrid

One AgroGrid symbol

One platform, five layers.

A farm can start with one layer and add the rest as it needs them. Each layer has the colour of the data it carries. Select a layer to see it on the pivot.

    What the satellite sees

    What the satellite sees, and what it doesn't.

    Satellites don't see insects. They see stress, and by the time stress shows up in the image, the damage has already happened. The forecast comes from the weather model. The image doesn't replace the agronomist. It tells them which field to walk first.

    It can show

    • Differences in canopy vigour across a field, on every clear-sky pass.
    • Emergence gaps and uneven stands after planting.
    • Zones that behave differently season after season, useful for variable-rate application.
    • The area actually worked by a machine, which is one of the three inputs to litres per hectare.

    It can't show

    • Insects, eggs or spores. It sees the crop's response to them, later.
    • The cause of stress. Water, nutrients, disease and pests can look alike from orbit.
    • Anything under cloud. On a cloudy week, there is no new image.
    • A diagnosis. That still needs a person in the field. Early detection with hyperspectral sensors is research work and will only be offered as a pilot with partners.
    Illustration of centre pivots with a vigour layer in green and amber
    Conceptual illustration, AI-generated. The colours are illustrative, not measured NDVI data. A map like this shows variation and stress, so someone knows where to go and look.
    When each source can tell you something Schematic, not to scale. The weather model flags an infection window before an outbreak. The field trap and the scout confirm presence. Canopy stress appears in satellite imagery only after damage has begun. Weather model infection window flagged Trap / scout presence confirmed Damage begins Satellite canopy stress visible SCHEMATIC · NOT TO SCALE

    The satellite says where to look. The weather model says when to worry. The agronomist decides.

    How the number is built

    Litres per hectare, verified.

    The number comes from three independent sources. Cross-checking them shows where they disagree: fuel that left the tank but isn't assigned to a machine, or hectares logged that the image doesn't confirm. It won't prove every litre on its own, but it turns a self-reported figure into one that can be audited.

    A

    Tank sensor

    Measures the diesel that actually left the tank. It also catches refuelling events and drops that don't match any refuelling or any machine.

    B

    Machine telemetry

    Assigns that fuel to a machine and an operation, in litres rather than engine hours. It works on mixed and older fleets that factory telemetry doesn't cover.

    C

    Satellite

    Checks the area that was worked against the image, the field boundary and the machine's own track, instead of taking it from the logbook alone.

    Worked example: try your own numbers

    –
    L / ha verified
    –
    L not assigned to a machine

    These are sample values for illustration only. They are not a customer result.

    Pumping simulator

    What one pivot season takes to pump.

    Enter your pivot and your energy source. The simulator works out the water, the energy and the fuel from physics, so you can see the size of the numbers the platform would measure.

    –
    – m³/ha
    Water pumped, m³
    –
    – kWh/ha
    Energy at the pump, kWh
    –
    – L/ha
    Diesel burned, L
    –
    kWh
    Covered by solar hours
    –
    – / ha
    Energy cost for the season

    Water = area × depth × 10
    Energy = water × head × 9.81 ÷ (3,600 × efficiency)
    Diesel = energy × generator L/kWh

    An estimate from your inputs. It is not a quote, a design or a savings result. The platform replaces these assumptions with measured values.

    Next

    Find your farm on a satellite map, place your pivots, and get a summary with area, solar resource, rainfall and soil texture for that spot. Coming to this website.

    Who is behind it

    Built on top of a group that generates the energy.

    One Aerospace Canada Inc. is a wholly owned subsidiary of One Energy Canada Inc., part of the One Energy Group. The group builds and operates solar, storage and microgrids for irrigation. One Aerospace adds the data layer on top.

    Most farm software reports energy use. The group behind One AgroGrid builds and operates the generation itself. The platform was designed around a hybrid irrigation plant operated by the group: roughly 3 MWp with diesel generators and batteries driving centre pivots. It was designed around a working site, not in a lab.

    One Aerospace Canada is a data, monitoring, sensor-integration and software company. Where a job requires a licensed professional, we work alongside licensed professionals.

    One Energy Group
    └─ One Energy Canada Inc.
       └─ One Aerospace Canada Inc. · 100% owned

    One Energy Group, all entities

    450+ MW
    Built
    175+ MW
    Storage integrated
    14
    Years
    3
    Countries operating · BR, US, CA

    These figures belong to the One Energy Group. One Aerospace Canada was incorporated in 2026 and has no project history of its own.

    Talk to us

    Tell us about a real farm.

    Tell us the crop, the pivots and where the energy comes from. We'll answer plainly about what the platform would change and what it wouldn't. Start with the quick check below, then email us. Add the simulator figures if you like.

    Farm check · runs in your browser, nothing is sent

    Email the summary

    The email button opens your own email app with the summary filled in. Nothing is sent until you press send.

    Email

    Paste the farm check summary into your email. You'll get an answer from a person, not an automated sequence. Phone: +1 587-330-5648