Skip to main content

Rise opens 6G proving ground in Sweden

AstaZero will test communications between vehicles and infrastructure
By David Arminas June 10, 2025 Read time: 2 mins
Telecom providers, AI engineers and vehicle manufacturers around the world can work together at AstaZero (image: AstaZero)

Rise (Research Institutes of Sweden) has unveiled a 6G edge-computing facility with end-to-end vehicle and infrastructure testing facilities. 

Telecom providers, AI engineers and vehicle manufacturers around the world can work together at AstaZero, the world’s first full-scale independent test environment for automated transport system and mobility connectivity. 

This includes component reliability tests in electromagnetic chambers to repeatable functionality tests at the AstaZero proving ground, where systems can be tested in a safe, realistic environment.

Rise says that, as international 3G networks are decommissioned, traffic, business and mission-critical systems, such as police, ambulances and fire brigades, face the challenge of upgrading and adapting their systems to ensure seamless integration with 6G infrastructure and technologies. 

AstaZero is now launching a system that enables communication reliability between vehicles to reach 99.999%, marking the biggest breakthrough in vehicle testing for a generation, according to the Swedish researchers.   

The next generation of critical communication (V2X) scenarios will unlock the full potential of this ecosystem and allow vehicles – both AI-enabled and non-AI-enabled – to interact within edge networks. 

To reach the required level of reliability will require tests at the individual sensor level - but also on integrated and collaborative systems, a task which has been impossible until now.

This is a critical step forward in the journey for autonomous vehicles, industrial automation and connected societies, as it allows virtual objects and situations to be tested in scenarios limited solely by the engineer’s imagination and vehicle technology.

“In the future, communication might not always originate from the sensors on the vehicle itself, but instead from sensors mounted on connected infrastructure or from the sensors of another vehicle,” said Peter Janevik, CEO, Rise AstaZero.

“In these types of systems, three key factors are crucial: reliability, ultra-fast communication and intelligent decision-making. However, the bitter truth is that without a global, harmonious and integrated testing approach, there is no guarantee that vehicles and infrastructure will have the capabilities to enable the highest level of safety with complete confidence within this connected ecosystem.”

Related Content

  • NoTraffic V2X tech gets US patent approval
    February 15, 2024
    Platform offers software-defined infrastructure including signalised intersections sensors
  • Automatic signal control to prevent emergency vehicle collisions?
    March 14, 2012
    Field trials under way in Arizona promise eradication of accidents between emergency vehicles at intersections – as part of a national focus on ‘intelligent signal’ infrastructure. Collisions between police cars, ambulances and fire crews as they reach intersections at the same time, with equal priority given by all signals set on red, are as serious as they sound absurd. For emergency teams and those in need of their help, the consequences are dire. The solution could come from application of connected veh
  • Intertraffic Awards 2022: shortlist announced!
    February 4, 2022
    Winners will be revealed at the opening ceremony of Intertraffic Amsterdam in March
  • Hyperloop One completes Hyperloop full systems test
    July 17, 2017
    Hyperloop One has completed its first full systems Hyperloop test in a vacuum environment at the company’s test track in the Nevada desert. The vehicle coasted above the first portion of the track for 5.3 seconds using magnetic levitation and reached nearly 2Gs of acceleration, while achieving the Phase 1 target speed of 70mph. The company is now entering the next campaign of testing, which will target speeds of 250 mph. Hyperloop One tested all the system's components, including its highly efficient motor,