An aircraft with three quarters the wingspan of an Airbus A320 and the weight of two adults took off from a runway in Saxony-Anhalt on 2 September, flew a wide, careful circuit for seventy minutes, and landed again. It never went higher than 180 metres.
That is not a modest result. It is the first flight of HAP-alpha, the German Aerospace Center’s solar-powered high-altitude platform, and the start of a programme aimed at parking an aircraft in the stratosphere for weeks at a time.
The numbers are the story: 27 metres of wing, 138 kilograms all up.
Informazioni rapide
| Aeromobili | HAP-alpha, uncrewed high-altitude platform |
| Operatore | DLR, German Aerospace Center |
| Primo volo | 2 September 2026 |
| Posizione | DLR National Experimental Test Center, Cochstedt, Germany |
| Durata | About 70 minutes |
| Maximum height | Approximately 180 metres above ground |
| Apertura alare | 27 metres |
| Mass | 138 kilograms |
| Energia | Solar only |
| Design cruise altitude | Up to 20 kilometres |
| Wind limit for first flight | 1 metre per second |
| Payloads planned | MACS-HAP camera system and HAPSAR synthetic aperture radar |
| Institutes involved | 16 DLR institutes and facilities |
Built so light it bends
The engineering problem with a solar high-altitude aircraft is circular. To fly on sunlight alone you need an enormous wing and very little mass. Very little mass over an enormous wing means a structure that flexes dramatically in flight and is acutely vulnerable to aeroelastic effects — above all flutter, the self-reinforcing oscillation that can destroy an airframe in seconds.
DLR spent a long time on the ground before it risked the air. A ground vibration test completed in July 2025 fitted the airframe with electromechanical shakers and dozens of sensors to map exactly how it wanted to oscillate.
The maiden flight was then treated with the caution the airframe deserves. Wind speed had to be no more than one metre per second. Airspeed was kept between roughly 30 and 50 km/h. The point of the sortie was to collect validation data for the flight-dynamics models, not to demonstrate anything spectacular.

That caution is well earned. Helios set an altitude record for propeller-driven aircraft and then came apart in flight two years later. Everyone working in this field has read that accident report.
A 25-person crew for one aeroplane
HAP-alpha is flown by a remote pilot from a mission control centre, with a 25-strong interdisciplinary team monitoring every manoeuvre and a safety pilot standing at the edge of the runway ready to take over.
The project is led by the DLR Institute of Flight Systems, with fifteen other DLR institutes and facilities contributing — lightweight structures, aeroelasticity, aerodynamics, flight guidance, software, remote sensing, radar, atmospheric physics, electrified propulsion and more. The airframe itself is built at Braunschweig.
What it is actually for
The target is the lower stratosphere, around 20 kilometres up. That altitude is interesting because it is above the weather and above controlled airspace, but far below orbit. An aircraft loitering there can stare continuously at one patch of ground in a way a satellite in low Earth orbit cannot, and it can be landed, modified and sent back up.
DLR is developing two payloads specifically for it: MACS-HAP, a modular high-resolution camera system, and HAPSAR, a synthetic aperture radar. The stated applications are shipping-lane monitoring, disaster response, environmental monitoring and internet provision.
Where solar high-altitude platforms sit between conventional drones and satellites, and why several governments are funding them.
Cosa succederà dopo?
The flight data is being analysed before a second low-altitude sortie is scheduled. After that, DLR plans higher flights over very sparsely populated areas or over the sea — because an aircraft this fragile, climbing through the weather towards 20 kilometres, is not something anyone wants to attempt over a town.
It is a long way from 180 metres to 20,000. But every solar high-altitude programme that ever worked started with a very light aeroplane going round the airfield very slowly on a very calm day.
Domande frequenti
What is HAP-alpha?
When did HAP-alpha make its first flight?
Why did HAP-alpha only fly at 180 metres?
How is HAP-alpha flown?
What sensors will HAP-alpha carry?
What is a HAPS and why does it matter?
Who builds HAP-alpha?
Sources: DLR, aeroTELEGRAPH, Drones Magazin, aero.de, NASA.




0 Commenti