The hall that knows who is coming.
AERDOMA ties air handling to bookings, lighting and access. An empty hall is not heated. A booked one gets itself ready.
What is wrong today
The air-supported hall is a well-solved piece of technology. Manufacturers control the air handling precisely — internal pressure, cascade temperature control, response to wind.
Nobody, however, deals with operations. The hall is heated by the calendar, not by whether anyone is coming. Lights stay on until someone turns them off. Doors are unlocked with a key.
And when the operator looks at the gas bill at the end of the month, they cannot say how much of it belongs to a single booking.
This is not a marketing claim. It follows from two documents we analysed: the existing Calypso technology (Desigo and PXM10) and a Polish tender specification from 2024. The Polish specification is very mature in control terms — cascade, heating curve, safety override in frost. And it does not contain a single word about bookings, access, or who is inside the hall.
A chain nobody else has
What we do differently
Booking → pre-heating → light in the sector → entry by QR code → cost of that one booking.
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Booking
A player books a court in the app. The system knows which sector and for what time.
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Pre-heating
Heating starts at a time computed backwards, so the hall is warm at the start of the booking — not at the start of the hour.
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Light in the sector
Five minutes before the start, only the court in play lights up. The system checks the contactor to confirm the circuit actually closed.
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Entry
A QR code on the phone opens the door. It is valid for that sector and that time. It works without internet.
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Cost
Consumption is assigned to one booking. Not to a month, not to a hall — to a booking.
We do not compete on pressure control. Existing systems are good at it and we build on them.
We compete on the hall knowing who is coming and when, and getting itself ready accordingly. Pressure and temperature control stay where they are good — we put a plan on top of them.
Booking a sector automatically orders pre-heating, light and access. The operator switches nothing on and the player arranges nothing.
What we bring
Six things. Where we have a number, it is here. Where we do not, there is none.
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An empty hall is not heated.
Pre-heating is computed for the start of a specific booking, not for an hour in a calendar. The weather forecast and solar gain through the membrane are part of the calculation.
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Light is on where people play.
By sector, five minutes before the booking, with a run-on and a contactor check that the circuit actually closed.
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Entry without a key.
A QR code bound to a booking, a sector and a time. The controller holds the list of valid entries, so access keeps working when the internet is down.
3 s lock pulse
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You know what one booking costs you.
An MID-certified electricity meter is the basis for re-invoicing a sub-tenant. Consumption is matched to bookings, not to months.
MID certified meter
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The hall protects itself.
In wind and snow the controller in the hall reacts within seconds, without waiting for an operator. The mechanical parts — the emergency pressure switch and the safety thermostat — work even when the control system does not.
22 faults in the alarm catalogue
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You see all of it from your phone.
Several halls at once, with consumption compared between them. Live values arrive every five seconds.
5 s telemetry to the control screen
How it works
Three layers and one rule: the lower layer always overrides the higher one.
- sensors pressure, temperature, humidity, wind, CO, smoke
- controller in the switchboard runs without internet
- application phone, tablet, PC
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Safety is in hardware.
The emergency pressure switch, the manual-reset safety thermostat, motor protection, the pressure relief damper and the spring return on the actuators need no software. They work even when the controller is down.
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Control is in the hall.
Internal pressure, the temperature cascade, wind and snow response, CO and smoke, start sequences and generator start all run in the controller in the switchboard. None of it waits for the network.
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Planning is in the cloud.
Bookings, adaptive pre-heating, weather forecast, energy accounting, access rights and inspection records. They need data from outside, but they are not time-critical.
If the internet fails, the hall carries on with the last plan for 72 hours and protects itself. QR entry keeps working. The cloud is for planning, not for survival.
Who it is for
| Type of operation | What it gets |
|---|---|
| Tennis club, 1–2 courts | stops heating an empty hall, entry without keys |
| Municipal sports facility | re-invoicing sub-tenants, occupancy overview |
| Multi-hall operator | consumption compared across halls |
| Public tender | Modbus TCP and BACnet IP for the building management system |
Who we work with
We build on components from European manufacturers — switchgear and protection, the controller, the weather station and the sensors.
Where we are now
The system is in development. The control application, the cloud and the client application with the ticket are finished and run against a reference controller. What is missing is the important part: the first hall.
We are looking for operators who want to be there from the start — on better terms, and with direct influence on what the product becomes.
Call us
A hall operator does not want to fill in a form. They want to ask someone whether this will work for them.