Cellnex awarded six 5G projects along transport corridors in Europe

To augment 5G network coverage, the European Commission has commissioned Cellnex to deliver six projects, including four inter-country transport pathways linking Portugal, Spain, and France.
Cellnex awarded six 5G projects along transport corridors in Europe

To augment 5G network coverage, the European Commission has commissioned Cellnex to deliver six projects, including four inter-country transport pathways linking Portugal, Spain, and France.


This project, which consists of four deployments and two studies, seeks to establish 5G coverage along two road corridors connecting Spain with France (Barcelona – Montpellier/Toulouse & Bilbao – Bordeaux) as well as on another pair of roads that link Spain to Portugal (Salamanca – Porto – Vigo & Mérida – Évora).

The two studies assess the impact of Abertis, an “essential enabler for connected and automated mobility in the future,” on Italy, and Austria and their connection to the EUMOB project.

The project, funded by the European Commission‘s Connecting Europe Facility (CEF-2) Digital program, aims to provide 5G connectivity for vehicles traveling along major corridors in order to ensure uninterrupted road safety services.

Cellnex is introducing 34 sites (including distributed antenna systems in tunnels) to fulfill its 5G connectivity project that spans 1,400 km across the four cross-border corridors. Utilizing its neutral host model, V2X communications infrastructure network, and edge computing nodes, it will be able to offer operators an unprecedented level of reliable connection with minimal downtime.

Eduardo Fichmann, Global Director of Innovation and Product Strategy at Cellnex, said “Cellnex is investing in the benefit that digitalising these road corridors will bring, not only for connected vehicles but also for road network managers, emergency services, logistics and fleet operators as well as passengers themselves. Mobile operators and the various public and private actors in the mobility sector to join the project and collaborate in developing new services that will be possible thanks to the roll-out of these infrastructures.”

The European Commission is providing fifty percent of the €24 million needed for these projects, which are planned to begin in January 2023 and be finished by December 2025.

Apart from keeping the sat navigation running and your little ones entertained in the backseat, uninterrupted 5G networks between Europe’s countries – where you might shift to a different operator – are essential for autonomous driving’s future success.

In addition to the cross-border connectivity initiatives that Cellnex will be initiating, the European Union is heavily investing in self-driving car projects. These plans aim to develop practical solutions for autonomous vehicles within its member countries.

If you’re unwinding in a self-driving car as it coasts through Europe, the last thing you want is for your trip to take an unexpected turn when its 5G connection drops out at a border. That’s why this issue of connectivity continuity must be addressed before autonomous travel can become a reality.


Recent Content

Freshwave’s portable 5G private network, deployed at the National Robotarium, is advancing Industry 4.0 and agritech through real-time robotics applications. Leveraging n77 spectrum, the network enables precision agriculture and scalable IoT solutions, overcoming challenges in rural connectivity and data processing.
Cloud-native networks are no longer the future—they are the present. Businesses transitioning to cloud-native environments gain agility, faster service deployment, and seamless integration with 5G and AI-driven automation. However, the migration process can be challenging due to legacy infrastructure integration, potential downtime risks, and issues with data visibility. VC4 simplifies this process with a structured, zero-downtime migration strategy, ensuring accurate network inventory and seamless cloud-native adoption. Partner with VC4 to build a telecom network that is ready for the future.
Learn about regenerative non-terrestrial networks (NTNs) and their role in advancing global connectivity. This article explores the differences between partial and fully regenerative architectures, key handover mechanisms, and the challenges and opportunities associated with satellite-based mobile connectivity.
Federated Wireless has launched the Department of Defense’s first commercial private 5G network at the Marine Corps Logistics Base Albany. Utilizing CBRS spectrum, the network enhances real-time inventory tracking, process automation, and operational efficiency, reducing labor costs by 55% and boosting inventory accuracy to 98%. This deployment serves as a model for military logistics modernization across the DoD, leveraging cutting-edge technology from JMA Wireless and HPE.
Hanyang University Hospital in Guri, South Korea, has deployed an advanced private 5G network from HFR Mobile, revolutionizing healthcare operations. The network supports AI-powered patient monitoring, real-time infusion tracking, and secure data communication. This milestone showcases private 5G’s potential in addressing critical safety and efficiency challenges while paving the way for future innovations like robotic surgeries and IoT-based predictive healthcare.
BSNL and Echelon Edge have joined forces to install a private 5G SA network at Amlohri Coal Mines, transforming India’s mining sector. The network enables real-time IoT monitoring, AI-powered traffic management, drone inspections, and digital twin integration for safer, more efficient operations. This deployment highlights the transformative potential of 5G in modernizing mining while promoting indigenous technology under India’s “Make in India” initiative.

Download Magazine

With Subscription

Currently, no free downloads are available for related categories. Search similar content to download:

  • Reset

It seems we can't find what you're looking for.

Subscribe To Our Newsletter

Scroll to Top