Vodafone and Porsche deploys hybrid private 5G network in Europe

Vodafone Business and Porsche announced they constructed Europe's first hybrid private 5G network. The coverage stretches over 700 hectares and allows secure LTE and 5G connectivity from both public and private networks on one site. Porsche 5G network is deployed at the Nardo Technical Center (NTC), situated in southern Italy's Apulian region.

Vodafone Business, a leading European enterprise provider of the UK operator Vodafone, announced they constructed Europe’s first hybrid private 5G network. The coverage stretches over 700 hectares and allows secure LTE and 5G connectivity from both public and private networks on one site. This groundbreaking development brings unparalleled scale to users looking for reliable mobile data connections in their area.


Porsche, owned by Volkswagen, recently announced the deployment of their 5G network at the Nardò Technical Center (NTC), situated in southern Italy’s Apulian region. This vast location has around 20 tracks for testing vehicles and covers 700 hectares – an area equaling seven million square meters. To put that into perspective, Nokia previously revealed “Europe’s biggest industrial private 5G network,” however, Porsche’s property outweighs it significantly if you look at the comparison side-by-side.

These are not perfectly equal 5G installations. One is all private edge, while the other is a 50/50 blend between private infrastructure and the public network (which Vodafone does not own in France). It’s still unclear how much of the NTC site is covered by private cellular, but it must be completely covered by both public and private networks. Additionally, one has to ask if this 5G installation at the NTC site can truly fall under “industrial,” as mentioned with the ASN project?

The NTC proving ground is an invaluable asset for the global automotive industry, aiding in the development and validation of cutting-edge intelligent and connected vehicles. The LTE/5G setup facilitates vehicle-to-infrastructure communication, as well as vehicle-to-vehicle features – both essential to industrial 5G projects. Highly automated driving functions and fully automated vehicles are also possible with this technology, a remarkable concept that deserves closer consideration.

By utilizing the private 5G edge part of their new hybrid infra-combo, Porsche Engineering is able to provide its automotive customers with a “real-time communication network” that offers optimized performance in areas such as security and reliability. Moreover, the public side of this infrastructure will enable local citizens access to faster 5G networks – displaying how new technologies can benefit everyone involved. This unique combination promises reduced delays, wider bandwidths, and much quicker deployment times overall.

It appears that NTC could maximize the benefits of a local 5G expansion for customer-oriented, data-heavy applications. The phrase ‘hybrid’ probably relates to a shared core server between private access networks and RAN systems based onsite. Vodafone mentioned this project as part of their collaboration with Porsche Group, which acquired the site in 2012; they previously installed standalone 5G services at a development center in Weissach, Germany, last year.

In 2019, the NTC’s main 12.6-kilometer track underwent a renovation to include fiber optic technology for “rapid data transfer and correct road indicators that validate self-driving”. Porsche hired Ericsson for one of its first private 5G networks in Leipzig, Germany, which was facilitated by an enterprise 5G permit from German regulator BNetzA within the 3.7-3.8 GHz ‘vertical’ spectrum band. Unfortunately, there is no current information about what company will be partnering with them on this new project at the NTC yet.

Peter Schafer, CEO of Porsche Engineering, expressed his commitment to driving technologies forward so that customers can meet the demands of tomorrow’s mobility. The new 5G network provided by NTC offers its patrons an improved infrastructure for developing and testing autonomous vehicles with intelligent connectivity.

Vinod Kumar, CEO of Vodafone Business, highlighted the potential for private 5G networks to revolutionize businesses. He stated, “Private 5G networks can open up possibilities and enable companies to rethink their operations. In Nardo, private 5G is enabling a space that looks like an actual smart city with consistent coverage both onsite and off-site – paving the way for applications that will completely transform transportation and mobility.”


Recent Content

Indoor 5G enables high-speed, low-latency connectivity in enclosed environments like offices, hospitals, and airports, supporting mission-critical applications and smart building operations. The market is driven by technological advancements in small cells, distributed antenna systems, and a mix of mmWave and Sub-6 GHz bands. Asia-Pacific leads in adoption due to smart city initiatives and government support. Picocells and antennas are key components, with growing demand in emerging economies fueled by subsidies and infrastructure upgrades. Recent developments include partnerships and acquisitions aimed at strengthening indoor 5G capabilities.
Twelve major European telecom providers, including Vodafone and Deutsche Telekom, have jointly urged the EU to allocate the full upper 6GHz band (6.425–7.125 GHz) for mobile use, citing the spectrum’s critical role in future 6G deployment. With the U.S. and China already advancing in this area, operators warn that delays could jeopardize Europe’s digital leadership and hinder next-generation connectivity infrastructure.
The telecom industry in 2025 is undergoing a major transformation, driven by artificial intelligence (AI), cloud growth, next-gen cellular networks, and national data sovereignty. AI is reshaping cellular infrastructure, enhancing spectrum efficiency through innovations like ELAA (Extremely Large Aperture Arrays), and enabling smarter, adaptive networks.
Vodafone is expanding its role in the UK smart metering upgrade by providing fixed-line connectivity between energy suppliers and the Data Service Platform (DSP). This move complements its existing mobile network role and positions Vodafone as a critical telecom partner in the UK’s digital energy transition, helping to advance national net-zero and smart grid goals.
The telecom sector is evolving from 5G to 6G, emphasizing AI-driven solutions, software-centric strategies, and open-source collaboration. This transition aims to enhance network management and user experiences with technologies like AR, VR, and more efficient data handling.
As AI workloads explode in complexity and scale, telecom providers face a $1B+ opportunity to evolve from traditional carriers into AI connectivity enablers. This article explores how telcos can monetize AI-driven traffic through dynamic network infrastructure, edge AI hosting, and cloud-like billing models tailored to modern enterprise demands.
Whitepaper
Telecom networks are facing unprecedented complexity with 5G, IoT, and cloud services. Traditional service assurance methods are becoming obsolete, making AI-driven, real-time analytics essential for competitive advantage. This independent industry whitepaper explores how DPUs, GPUs, and Generative AI (GenAI) are enabling predictive automation, reducing operational costs, and improving service quality....
Whitepaper
Explore the collaboration between Purdue Research Foundation, Purdue University, Ericsson, and Saab at the Aviation Innovation Hub. Discover how private 5G networks, real-time analytics, and sustainable innovations are shaping the "Airport of the Future" for a smarter, safer, and greener aviation industry....
Article & Insights
This article explores the deployment of 5G NR Transparent Non-Terrestrial Networks (NTNs), detailing the architecture's advantages and challenges. It highlights how this "bent-pipe" NTN approach integrates ground-based gNodeB components with NGSO satellite constellations to expand global connectivity. Key challenges like moving beam management, interference mitigation, and latency are discussed, underscoring...

Download Magazine

With Subscription

Subscribe To Our Newsletter

Scroll to Top