Verticals Cartography

This Verticals Cartography tracks the progress of Europe’s 5G Public Private Partnership (5G PPP) in developing 5G technology enablers and applications across diverse market segments through a large set of use cases, spanning proofs of concept, prototypes, demonstrations, trials and pilots to give consumers and vertical end-users tangible examples of 5G usage. Launched in September 2018, the Cartography is designed as a sustainable resource across Europe and globally, with regular reports on updates and impacts of 5G use cases within the 5G PPP. These are available for June 2019, March 2020 and September 2020.

Annual showcase brochures of successful mature use cases stem from the competitions coordinated within the 5G-IA Trials Working Group. Four such brochures are available: 5G Infrastructure PPP - Trials and Pilots published in September 2019, December 2020August 2021 and November 2023. Each year, the top ten trials and pilots are selected by WG Panel Members based on pre-defined evaluation criteria.

How to use the 5G PPP verticals cartography:

To view the many examples available, click on industry vertical, country locations, type of use case experiment and functionalities defined by the International Telecommunications Union (ITU): Enhanced Mobile Broadband (eMBB), Massive Machine Type Communications (mMTC), and Ultra Reliable Low Latency Communications (URLLC), as well as 5G technical Key Performance Indicators achieved within the 5G PPP. 

This cartography contains a vertical mapping of 5G R&D projects, encompassing trials, pilots and use cases carried out within the framework of the 5G PPP initiative. A new version of this vertical cartography will be promoted within the Vertical Engagement Tracker sponsored by the Smart Networks and Services Joint Undertaking (SNS JU) initiative. Stay tuned for future developments!


 

Health

SLICENET: 5G Smart Health (Connected Ambulance)

Providing a connection hub for emergency medical equipment and wearables. Enabling real-time streaming to the emergency team on stand-by in hospitals. 

Smart Cities

5G-PICTURE: City testbed

Converged fronthaul and backhaul services for smart cities. Innovations enabled by 5G City of Bristol network infrastructure.

Smart Cities - multiple verticals

5G-PHOS: Ultra Dense City Area

Ultra-high capacity fronthaul network for Gbps-grade mmWave access to demanding areas such as city centres and business districts. Architedting 5G networks for ultra-dense and hotspot areas with diverse traffic density and coverage needs.

Smart Cities

5G-PHOS: PON-overlaid Dense City Area

Driving new network concepts targeting applications in dense city areas, validated through scalable lab and field-trial demonstrators.

Smart Cities

5G-MoNArch: 5G Touristic City

A touristic city test-bed demonstrating innovative applications and enhanced user experiences for citizens and visitors, leveraging network slicing and elasticity. 

Transport & Logistics

5G-MoNArch: 5G Smart Sea Port

A smart port testbed bringing increased efficiencies in terms of energy resources, infrastructure facilities, traffic control and property management. 

Broadcasting & Media

5G-MEDIA: Ultra High Definition over Content Delivery Network

A reliable, high-quality content-aware network meeting increasing demand, with open standards, interfaces and protocols. Unleashing the potential for everyone to access all areas of the Internet. 

Broadcasting & Media

5G-MEDIA: Remote Production

Enabling remote and smart production with the 5G MEDIA platform while meeting performance requirements of low-latency and high-quality. 

Broadcasting & Media

5G-MEDIA: Immersive Media and Virtual Reality

Quality of Service (QoS) and Quality of Experience (QoE) in immersive media. Tackling the critical challenge of availability and interaction between users for a much smoother user experience.

Broadcasting & Media

5G ESSENCE: Next-Generation integrated in-flight connectivity and entertainment systems

Next-generation inflight connectivity and entertainment systems turning planes into a self-contained 5G network edge.

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