Private Network Check Readiness - TeckNexus Solutions

Ericsson & BT Deliver 5G Private + Public Network for SailGP UK

At the Emirates Great Britain Sail Grand Prix in Portsmouth, Ericsson and BT combined private 5G and public 5G Standalone (SA) to enable real-time boat telemetry, low-latency video for broadcast, and immersive AR/VR fan experiences. The hybrid network, featuring Ericsson Private 5G and BT’s 5G SA slicing, created a fully connected race ecosystem spanning multiple sites and the F50 fleet.
Ericsson & BT Deliver 5G Private + Public Network for SailGP UK
Image Credit: Ericsson

At the Emirates Great Britain Sail Grand Prix in Portsmouth, Ericsson and BT combined private 5G and public 5G Standalone (SA) technologies to create a fully connected race environment. The deployment enabled ultra-reliable, low-latency communication between the SailGP Race Stadium, operations centers, and the high-speed F50 catamaran fleet, while delivering immersive fan experiences and supporting live broadcast production.


With Ericsson providing Private 5G and Cradlepoint edge routers, and BT delivering dedicated 5G network slices over EE’s public 5G SA network, the event showcased how public and private networks can seamlessly integrate to power next-generation live sports.

Connectivity Challenges in Delivering a Live, Data-Intensive Sailing Event

SailGP required a network capable of handling extreme performance demands:

  • Real-Time Telemetry: Each F50 catamaran generates over 53 billion data points per race day.

  • Low-Latency Video: Support for umpire adjudication and broadcast-quality video streaming.

  • Multi-Site Coverage: Connectivity spanning the Portsmouth Race Stadium, operations centers, and technical facilities 30 km away.

  • Fan Engagement: Delivering immersive AR/VR experiences simulating onboard perspectives.

  • Operational Reliability: Dedicated capacity for merchandising, point-of-sale systems, and event staff communications.

Legacy Wi-Fi and public networks could not meet the low-latency, high-capacity, and mobility requirements for a live, data-intensive sailing competition.

Ericsson & BT’s Hybrid 5G Architecture for SailGP UK

Ericsson deployed a dedicated Private 5G network covering both event and operational sites, while BT provided two tailored 5G Standalone network slices over EE’s public network. This hybrid approach ensured seamless connectivity between private and public domains.

Key Components:

  • Ericsson Private 5G: Secure, high-performance network connecting race venues, operations centers, and the F50 fleet.

  • Cradlepoint Edge Routers: Installed on each F50, managing telemetry, IoT, and live video streams.

  • BT 5G SA Network Slices: Prioritized connectivity for boat communications, broadcast feeds, merchandise transactions, and media uploads.

  • Edge Computing: Low-latency processing supporting instant analytics and immersive fan content.

  • AR/VR Fan Zone: Ericsson and BT tested high-frequency radios delivering gigabit capacity for 360-degree onboard experiences.

How Private and Public 5G Boosted SailGP Performance and Fan Engagement

Manish Tiwari, Head of Enterprise 5G at Ericsson, emphasized: “SailGP is pushing the limits of performance, and Ericsson is enabling that ambition — connecting the F50 catamarans with ultra-reliable, low latency 5G powering real-time decision making on the water.”

Kerry Small, COO of BT Business, added:“5G Standalone isn’t just about speed — it’s about unlocking tailor-made capabilities that transform customer experiences. With SailGP, we’ve shown how network slicing can streamline event operations and deliver consistent performance.”

The 5G Tech Stack: Ericsson Private 5G, BT SA Slicing & Edge Compute

The deployment used:

  • Ericsson Private 5G: Delivering secure, low-latency, and mobile connectivity for race and operational sites.

  • BT 5G SA Network Slicing: Isolated, customized slices for high-priority applications.

  • Cradlepoint Edge Hardware: Managing data transmission from high-speed vessels in real time.

  • Sony 5G Video Encoders: Supporting roaming HD cameras and low-latency live production.

  • AR/VR Integration: Leveraging ultra-low-latency 5G radios for immersive fan content.

Key Benefits of a Unified 5G Network for Live Sports

  • Real-Time Racing Insights: Instant telemetry and live video improved tactical decisions and fan engagement.

  • Seamless Broadcast Production: Low-latency video delivery enabled broadcast-quality feeds without wired infrastructure.

  • Operational Efficiency: Prioritized slices ensured uninterrupted payment systems, media uploads, and staff communications.

  • Immersive Fan Experience: 360-degree AR/VR experiences brought fans closer to the action.

  • Future-Ready Model: Demonstrated scalable architecture for smart sports events globally.

Why SailGP’s 5G Deployment Sets a Model for Smart Sporting Events

The SailGP deployment illustrates the value of combining private and public 5G networks with network slicing for live sports. It highlights a replicable framework for other high-performance environments such as motorsports, esports, and large-scale festivals.

It also underscores the role of 5G in delivering data-driven decision-making, immersive experiences, and operational reliability under extreme conditions.

Ericsson and BT: Powering Seamless Connectivity at SailGP UK

  • Ericsson: Provided the Private 5G network, Cradlepoint routers, and integration with edge compute and AR/VR systems.

  • BT: Delivered 5G SA slices over EE’s public network, ensuring prioritization for critical event functions.

Sony and SailGP Operations: Enabling Real-Time Data and Broadcasts

  • Sony: Provided low-latency video encoders for HD roaming cameras.

  • SailGP Operations Team: Integrated data and video streams into real-time race management systems.

SailGP UK 5G Deployment Timeline and Future Expansion

  • July 2025: Deployment live for Emirates Great Britain Sail Grand Prix, covering race days July 19–20.

  • Post-Event: Ericsson and BT plan to scale similar architectures for future SailGP events and other live sports deployments.

Expert Insights on Private + Public 5G Integration for Live Events

“This event highlights collaboration unified by 5G in the moments that matter.”Mark Seguna, BT Key Account Manager, Ericsson.

“The ability to blend private and public 5G with network slicing is a game-changer for live sports operations.”Kerry Small, COO, BT Business.


Recent Content

The emergence of 6G networks marks a paradigm shift in the way wireless systems are conceived and managed. Unlike its predecessors, 6G will embed Artificial Intelligence (AI) as a native capability across all network layers, enabling real-time adaptability, intelligent orchestration, and autonomous decision-making. This paper explores the symbiosis between AI and 6G, highlighting key applications such as predictive analytics, alarm correlation, and edge-native intelligence. Detailed insights into AI model selection and architecture are provided to bridge the current technical gap. Finally, the cultural and organizational changes required to realize AI-driven 6G networks are discussed. A graphical abstract is suggested to visually summarize the proposed architecture.
Telecom engineers know OSS systems aren’t broken—they just pretend to work. Outdated data, broken integrations, and overwhelming alerts create false confidence and slow operations. Discover how VC4’s Service2Create delivers real-time, trusted inventory and smarter workflows that engineers can actually rely on.
As the telecom world accelerates toward 5G-Advanced and sets its sights on 6G, artificial intelligence (AI) is no longer a peripheral technology — it is becoming the brain of the mobile network. AI-driven Radio Access Networks (RANs), and increasingly AI-native architectures, are reshaping how operators design, optimize, and monetize their networks. From zero-touch automation to intelligent spectrum management and edge AI services, the integration of AI and machine learning (ML) is unlocking both operational efficiencies and new business models.

This article explores the evolution of AI in the RAN, the architectural shifts needed to support it, the critical role of Open RAN, and the most promising AI use cases from the field. For telcos, this is not just a technical upgrade — it is a strategic inflection point.
ZTE and e& UAE have completed a successful Private 5G Network trial, showcasing high uplink speeds, multi-band adaptability, and ZTE’s NodeEngine Edge Computing platform. This trial enables rapid deployment, stronger enterprise connectivity, and practical use cases for smart industries, aligning with the UAE’s goal of becoming a digital innovation leader.
The City of Istres, France, partners with Ericsson, SPIE, and Unitel to deploy a cost-efficient Private 5G Network. This smart city blueprint reduces surveillance camera installation costs by over 80%, improves secure emergency communications, and leverages Edge Computing for AI-ready urban security. Istres sets a precedent for mid-sized European cities modernizing connectivity and resilience.
Spark and Air New Zealand have activated New Zealand’s first Private 5G Network for business operations at Auckland Airport’s logistics warehouse. Using Ericsson’s enterprise-grade 5G, the network powers a drone-robot system that automates stocktakes, keeps staff safer by removing the need for high-shelf manual scanning, and provides real-time inventory data to boost efficiency. This smart warehousing solution sets a new benchmark for airport logistics and supply chain innovation in New Zealand.

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

Download Magazine

With Subscription

Subscribe To Our Newsletter

Private Network Awards 2025 - TeckNexus
Scroll to Top

Private Network Awards

Recognizing excellence in 5G, LTE, CBRS, and connected industries. Nominate your project and gain industry-wide recognition.
Early Bird Deadline: Sept 5, 2025 | Final Deadline: Sept 30, 2025