Join the 5GAA

Join the 5GAA

The 5G Automotive Association (5GAA) is a global association with over 120 member companies from the automotive and telecommunications industries. Partners who are active in the broader telecommunications and automotive ecosystem, such as universities, research bodies, associations, and public authorities also joined the ecosystem. Each of the 5GAA members bring added value to the 5GAA mission through their contributions and visionary mindset. Together, the key partners foster collaboration and exchange to path the way towards the new mobility era.

What our members say

Building a representative membership and driving impactful partnerships

5GAA gathers over 115 member companies from the automotive and telecommunications industries. The association has also welcomed partners who are active in the broader telecommunications and automotive ecosystem, such as universities, research bodies, associations, and public authorities.

Global footprint

Shaping the new mobility globally, powering locally

Sector

Sector

Region

Region

Map members

Map members

Join the community

PLATINUM Members

(currently limited to 12 members including 8 founding members) – Platinum Members have the right to nominate representative to the Board, can propose candidates for WG Chairs or Vice-Chairs, candidacy priority for the Executive Committee

GOLD Members

Gold Members have the right to propose candidates to the Board, WG Chairs or Vice-Chairs elections, candidacy priority for the Executive Committee

GENERAL Members

General Members have the right to propose candidates to WG Vice-Chairs elections only

Work Items

Work Items

Completed Work Items – 2024

Technical Report

Objectives:

  • Explore use cases, system requirements, and deployment options for integrating Vehicle-to-Everything (V2X) communication technologies with infrastructure sensors.
  • Outline a framework for developing interoperable, standardised solutions that can operate efficiently within existing Intelligent Transportation System (ITS) spectrums.

 

White Paper

Objective:

  • Provide an update of 5GAA’s vision for the global deployment of smarter, safer and more sustainable mobility and transportation services.

 

Technical Report

Objectives:

  • Provide the state of the art including demonstrations and market status, regulation, and safety-related aspect regarding uncrewed ground robots (UGRs) as well as common analysis and system/component requirements for UGRs.
  • Show the methods of communication between UGRs and road users in view of existing gaps in ITS standards, to identify a way forward to incorporate UGRs in future standards.

 

Technical Report

Objective:

  • Outline a vision for integrating a Non-Terrestrial Network (NTN) connectivity layer as a complement to Terrestrial Networks (TN), enhancing coverage and services for connected vehicles.

 

Technical Report

Objectives:

  • Build on previous work in 5GAA on the topic of VRUs, focussing on co-existence and interoperability between different companies’ solutions.
  • Previous showcases and demonstrations have shown the functionality and safety benefits of VRU protection solutions, whereas the objective of VRU-DEMO is to show how these solutions are able to interact with each other.

 

White Paper

Objective:

  • Explore how to manage misbehaviour in Vehicle-to-Everything (V2X) communication systems, where vehicles and infrastructure directly exchange information.

Technical Report

Objectives:

  • Provide a business perspective on the Vehicle-to-Network-to-Everything (V2N2X) market, covering market value, stakeholder needs, market growth drivers, and business models observed in various deployments.
  • The report complements the high-level V2N2X architecture described in the 5GAA white paper ‘Road traffic operation in a digital age’ and the technical report ‘Vehicle-to-Network-to-Everything (V2N2X) Communications; Architecture, Solution Blueprint, and Use Case Implementation Examples.’

Technical Report

Objectives:

  • Describe an ecosystem for stakeholders on how to realise various V2X applications and use cases (UCs), using cellular network communications in combination with information sharing structures between backend systems.
  • Clarify the different implementation options of the V2X application in a vehicle and their related implications.
  • The report complements the V2N2X business perspectives  in the 5GAA white paper ‘Road traffic operation in a digital age’ and the technical report ‘Business Perspectives on Vehicle-to-Network-to-Everything (V2N2X) Deployments’.

White Paper

Objective:

  • Propose a framework for trust assessment within CAVs by defining key terms related to trust and trustworthiness, establishing a foundation for building trust between these vehicles and creating a taxonomy for classifying different trust relationships.

Technical Report

Objectives:

  • Develop a methodology specifically for testing vehicular communication antennas and provide validation measures that account for the unique form factors and characteristics of each vehicle.
  • This document is an updated version of the Vehicular Antenna Test Methodology technical report published by 5GAA in 2021, available here.

Position Paper

Objectives:

  • Reflect the automotive and connectivity industries agreement on spectrum allocation for ITS services in the 5.9 GHz band in Europe.
  • This 5GAA position paper also takes into account the updates from ETSI and CEPT and proposes a deployment band configuration for road-ITS in the 5.9 GHz band.

White Paper

Objectives:

  • Propose a transformative approach for automotive stakeholders, emphasizing scalable digital data exchange and a federated architecture to manage road traffic information efficiently.
  • Recommend a National Roadway Digital Strategy, federated information-sharing structures, and aligned investments.

Position Paper

Objective:

  • Provide an overview of how security, privacy, and data quality are addressed for C-V2X using mobile network and backend communications, also known as Vehicle-to-Network-to-Everything (V2N2X) solutions.

Technical Report

Objective:

  • The overview of cellular vehicle-to-everything (C-V2X) devices provides a fresh look at the devices currently available on the market or nearing release to capture the evolving C-V2X device landscape.

Completed Work Items – 2023

Objectives:

  • Work with the Connected Motorcycle Consortium (CMC) to identify potential C-V2X technology solutions for
  • use cases for powered two-wheelers, focusing on safety aspects
  • This includes use cases enabled by external connectivity or sensors but also covers use cases that may profit or be enabled by the presence of external computing power, representing an attractive potential market even with low V2X penetration.

Objectives:

  • Identify and evaluate a selection of evolving and emerging technologies for positioning in line with the 5GAA roadmap for use automotive use cases.
  • Perform a gap analysis based on automotive use cases concerning selected technologies and provide feedback to relevant SDOs.

Objectives:

  • Cover a broad range of topics, ranging from the analysis of MEC-relevant use cases and requirements, both from a technical and business perspective, the collaboration with SDOs and industry groups (GSMA), the definition of a reference architecture with related deployment scenarios, an early study on security and privacy aspects, and the drafting of a plan for future experimental activities on MEC for automotive services, including public demos.

Objective:

  • Highlight the vast array of new business opportunities that 5G will enable for the connected mobility ecosystem by moving the discussion beyond safety and automated driving to other innovative solutions and customer experiences.

White Paper

Objective:

  • Consider realistic evaluation assumptions based on a common understanding between the automotive industry and 5G-V2X technology vendors.

 

Objectives:

  • Address the issue of trustworthiness in relation to position information exchanged in the context of V2X communication(how much trust the ITS station can place on the received V2X message containing the positioning information).
  • Provide an overview of the current standards related to positioning, including the integrity of the position and confidence levels, and review the definitions and metrics used so far.

Objective:

  • Develop and socialise guidance documents on C-V2X direct communications RSU deployment in the USA with a focus on Day 1 (messages, minimum performance, interoperability and certification) to foster real-world infrastructure deployments.

Objectives:

  • Accelerate the understanding and adoption of VRU protection services enabled by C-V2X to meet the 5GAA-proposed roadmap for deploying those services.
  • This objective is addressed by experimentation and demonstrating existing technology and standards. Exploiting and analysing the results of the experiments and demonstrations enabled an assessment of the existing standards and potential standardisation gaps, laying the ground for the mass deployment of VRU protection services.

Completed Work Items – 2022

Objectives:

  • Stimulate auto industry awareness in Conformity Assessment (CA) and conduct a study of current CA schemes being developed by global industry organizations.
  • Develop a framework for a harmonized conformance assessment for PC5 applicable to both roadside units and on-board units and attain support from global industry bodies and stakeholders

Objectives:

  • Define use cases and align the Use Case Roadmap for mass-market deployment of advanced driving use cases, including their technology and spectrum requirements.

Objectives:

  • Analyze the feasibility of distributed vehicle antennas from an implementation perspective and develop measurement strategies for the analysis.
  • Analyze the specification impact and the potential necessary changes, and provide output to relevant standardization organizations for possible requirements recommendations.

Objectives:

  • Secure consumer acceptance and trust in V2X technologies, and perform lawful processing of data while preserving system efficiency to deliver upon the benefits of both basic and advanced V2X services.

Objectives:

  • Produce a report which describes the actions which 5GAA and its members would need to take to ensure that relevant ETSI and CEPT deliverables are created as needed to support the 5GAA C-V2X Roadmap.

Objectives:

  • Provide awareness of the current state of misbehaviour developments in standards developing organizations, and propose action items to fill the existing gaps.

Objectives:

  • Continue incubation of new technical enablers, both use case specific and use case agnostic, with the intent of achieving sufficient maturity for transition to standards developing organizations .
  • Contribute to SDOs via a Liaison member, bringing up new developments in foundational enablers and protocols for review and consumption by TCs & TFs.

Objectives:

  • Review and update the specified methodology for the use case analysis for Predictive Quality of Service (QoS) related Service Level Requirements.
  • Develop potential enhancements to interfaces, signalling and architecture of the Predictive Quality of Service (QoS) system, including but not limited to the aspects related to edge cloud and interoperability.

Objectives:

  • Detect, propose and evaluate possibilities for telecommunication operators, vendors and further stakeholders to provide what is necessary in order to enable the car OEM to better treat safety.
  • Investigate processes and tools used to develop and operate the complete chain of the system, deriving a judgement on feasibility of those processes for safety.

Objectives:

  • Monitor the activities of standards developing organizations and provide regular updates of the ecosystem to 5GAA members to enable an early identification of risks and challenges in standardization.

Objectives:

  • Introduce tele-operation service provider relevant use cases and scenarios with a V2N2V nature and identify gaps and develop architecture solutions for the development of tele-operated driving services
  • Study framework requirements of a tele-operation service between vehicle and remote tele-operation centre in cross-mobile network operators, cross-original equipment manufacturers and cross-authority scenarios.

Objectives:

  • Produce a C-V2X tolling white paper using the experience from the technology and cost analysis to show the tolling industry how to find common benefit in C-V2X and the importance of C-V2X in the future Road Digitalization Roadmap.

Objectives:

  • Establish use case implementation descriptions realizing use cases’ Service Level Requirements for Automated Valet Parking (AVP), Informative Sensor sharing (HD map Collecting and Sharing), Sensor Sharing for Automated vehicles (AVs) and HD Sensor Sharing for AVs.
  • Contribute to overarching application system implementation specifications combining the respective use case implementation specifications, including potential interfaces to network layer and security layer.

Objectives:

  • Update and improve use case descriptions and corresponding Service Level Requirements in already published Technical Reports and White Papers.
  • Collect, harmonize, align, and integrate new use case descriptions developed in 5GAA and publish the third volume of the Technical Report on C-V2X Use Cases and Service Level Requirements.

Objectives:

  • Strengthen 5GAA members’ understanding of the state of play of V2X in China and improve the cooperation with and among Chinese members.

Objectives:

  • Publish an industry specification defining a system profile to enable US deployment of interoperable basic safety services using LTE-V2X direct communication over channel 183.

Objectives:

  • Establish qualitative general, functional and operational requirements to describe systems for the 5G evolution and beyond that would be useful for automotive solutions.
  • Provide a unified 5GAA opinion on evolving technologies and the expected transition path for the automotive ecosystem when moving from current 5G technology to its evolution, including potential threats and opportunities.

Completed Work Items – 2021

Objectives:

  • Gather evidence of the environmental benefits associated with C-V2X and assist in developing this evidence into a compelling narrative.
  • Assess the benefits of C-V2X deployment (both LTE-V2X and 5G-V2X direct and network-based communications) in terms of emission reduction by 2050 in Europe (and for US and Asia) considering various positive and negative externalities.

Objectives:

  • Identify and investigate further potential enhancements needed to provide Predictive Quality of Service (QoS) for C-V2X, investigate interoperability of network slices, and provide relevant recommendations to standards developing organizations (SDOs) and industry forums, e.g. 3GPP, ETSI, ISO and GSMA.

Objectives:

  • Demonstrate the use of multi-access edge computing (MEC) technology for automotive services, for example, when two distinct automotive vendors can truly test at least three use cases involving two distinct mobile network operators (MNOs) employing the network infrastructure provided by two distinct infrastructure vendors.
  • Increase the flexibility of the current network service architecture, reduce the deployment effort, and increase the interoperability among different stakeholders in the system.

Objectives:

  • Describe how existing 3GPP methods reduce and improve service interruption due to network reselection.
  • Provide an original equipment manufacturer (OEM) view on current and desired network reselection.

Objective:

  • Close the gap of the first spectrum needs study by analyzing several advanced use cases and consider additional items such as security overheads in a second release.

Objective:

  • Prepare a report which describes the 5GAA’s 5.9 GHz radio channel deployment options for use by LTE-V2X and NR-V2X across all regions, and describe relevant changes to existing regulatory frameworks – or the introduction of new regulatory frameworks – which may be required across all regions.

Objectives:

  • Update Use Case Technical Reports with updated use case descriptions and develop a white paper for the Wave 2 of use cases.
  • Provide a new set of use cases with their corresponding service level requirements (SLRs) to be summarized into a new TR.

Objectives:

  • Study and describe specific and technology dependent use case implementations that fulfil the service level requirements (SLRs) as defined in the technology agnostic 5GAA use case descriptions.
  • Develop corresponding descriptions for three exemplary use cases: Left Turn Assist (LTA), (Electronic) Emergency Brake (light) Warning (EEBL), and Traffic Jam Warning and Route Information.

Objective:

  • Define a standardized test method and metrics for vehicular antennas with the dominant emittance toward the outside of the vehicle, focusing on vehicular antennas for telecommunications (2G, 3G, 4G, 5G (< 7.125GHz)), vehicular antennas for direct communication between vehicles to road infrastructure (operating in the designated ITS frequency spectrum (5.9GHz range)), GNSS antennas and 3D-measurements (vehicle-mounted antenna element)

Objectives:

  • Focus on positioning method for vehicles and vulnerable road users (VRUs) and study both positioning methods employing cellular signals (5G/LTE/C-V2X) and the positioning methods integrated with other technologies.
  • Study the requirements of positioning, build the understanding of positioning system framework, and offer the corresponding technologies according to the requirements and environments.

Completed Work Items – 2020

Objective:

  • Analyze V2I deployment costs, including financial, economic and market aspects, to provide guidance to regulators, policymakers and other key stakeholders.
  • Analyse options with higher and lower levels of V2I-based infrastructure vs. V2N-based approach.

Objective:

  • Define and analyse the automotive use case requirements in terms of Quality of Service (QoS) using network slicing and analyze business value and identify the specific features required to support the automotive use cases that cover IoT and mobile broadband services.

Objectives:

  • Define use cases and align the Use Case Roadmap for mass-market deployment of advanced driving use cases, including their technology and spectrum requirements.

Map, assess and contribute to the identification of technical gaps (upper and lower layers, e.g. protocols, Rel. 18 requirements) and forward to relevant standards setting organizations (SSOs).

Objectives:

  • Define all necessary details for conducting the first 5GAA C-V2X Plugfest in the first quarter of 2019.
  • Define 5GAA requirements and timelines for conducting successive plugfests after the first quarter of 2019.

Objective:

  • Facilitate a harmonized industrial evolution and development of enhanced cellular V2X, starting with supporting the basic use cases with the already available C-V2X technologies such as 3GPP Rel-14/15 C-V2X and adopt new technologies for the use cases which cannot be served with current C-V2X

Objectives:

  • Establish a lightweight security system for C-V2X/5G-V2X communications by conducting a requirements analysis of regional privacy regulations to establish an overview of regional differences and define requirements for each region.
  • Analyze concepts to simplify the architecture and its impact on regional privacy compliance.

Objectives:

  • Identify structured and reasonable requirements on mobile networks relevant to spectrum auctioning to accommodate automotive use cases and enable mobile network operator (MNOs) to quantify associated investments.
  • Analyze licensed spectrum auctioning frameworks and other incentivizing initiatives, such as infrastructure leasing exceptions, where additional investments required by mobile network operators (MNOs) to fulfill requirements associated to automotive use cases are appropriately recognized.

Objectives:

  • Develop application-level groundwork for the next-generation services (Rel-16) with use cases involving complex message interactions for assisted and autonomous (Ll1-Ll5) and automated driving (supported by infrastructure).
  • Build prototypes and demonstrate next-generation applications (Rel-16 and further) to gain hands-on experience with some use cases to help stakeholders (OEMs, suppliers, road operators, regulators) understand how 5G NR can implement the concept of connected and automated vehicles for proximal vehicle-to-X coordination and cooperation.

Objective:

  • Solicit road operators’ views on their role in the deployment of ITS C-V2X services through a free form questionnaire to determine the road operator willingness to participate directly in future 5GAA discussions or events.

Objectives:

  • Develop and demonstrate a phased vulnerable road user (VRU) protection approach by defining a VRU protection roadmap.
  • Provide realistic paths for vulnerable road user (VRU) protection using cellular communications, differentiating C-V2X from 802.11p based technologies and set the stage for application of C-V2X to VRU protection.

Objectives:

  • Define the application layer reference architecture for the V2X service and recommend the application layer reference architecture of the V2X system.
  • Discuss other architecture related subjects to align with the coordinated 5GAA architecture.

 

Completed Work Items – 2019

Objective:

  • Identify, analyze and compare the advantages and disadvantages of V2I deployment using long-range (Uu) mobile networks and RSU (PC5) from a business perspective, reflecting how C-V2X enables synergies with both the transportation and telecommunications infrastructure, which includes leveraging existing mobile network infrastructure for C-ITS.

Objectives:

  • Work on the CEPT/ETSI-related activities by extending the ITS safety-related band at 5.9 GHz to allow coexistence of LTE V2X and Urban Rail to coexist with ITS-G5 within the 5,875-5,925 MHz frequency band.
  • Clarify ITS “co-frequency coexistence” statements, include future 3GPP releases and evolution, engage the urban rail community, engage with national administrations.

Objectives:

  • Develop a trial and interoperability testing framework that defines the deployment scenarios and uses cases, testing methodologies, key performance indicators (KPIs) to be tested.
  • Develop a 5GAA trial and interoperability testing strategy to capture the 5GAA testing priorities, including setting up a 5GAA testbed environment and planning multi-partner trials covering the priority test cases.

Objective:

  • Prepare input material for the work in ETSI TC ITS to amend the test specification required to use LTE-V2X as the underlying access layer technology.

Objectives:

  • Identify and evaluate potential architecture enhancements needed to provide predictable Quality of Service (QoS) for C-V2X in 5G for the automotive industry, utilizing network slicing and edge computing technologies.
  • Provide guidelines on the design of Network Slice Templates (NST) for the automotive industry that enable support for different categories of C-V2X use cases and 5GAA requirements.

Objectives:

  • Provide an assessment of the deployment roadmap for use cases.
  • Establish a mapping between use cases and potential technology candidates, e.g. 3GPP releases, sidelink and/or Uu requirements.

Objectives:

  • Define a framework for classifying use cases and requirements, identify prioritized use cases, functional requirements and key performance indicators (KPIs).
  • Perform a gap analysis and specify the extended set of prioritized use cases.

Objectives:

  • Identify the use cases that benefited from the presence of an application server, and based on the output, explore the V2X application server features and how the application server can be used to perform these use cases.

Completed Work Items – 2018

Objectives:

  • Develop consensus on operating models for system implementation, taking into account the various requirements arising from the planned networked transport services.
  • Investigate architectural paradigms such as cloud-based solutions, including edge computing aspects, and analyze solutions from the perspective of verification, confidentiality and privacy, identify requirements and key performance indicators (KPIs), and recommend further actions.

Objective:

  • Enable the development of a strategy for comprehensive testing, trials, demo pilots, and compliance assessment for V2X using cellular air interface specifications (i.e., including PC5 and Uu).

 

Objectives:

  • Promote C-V2X, including existing (LTE-V2X PC5 and Uu interfaces) and future realizations, as the technology of choice for ITS and promote ITS in 5.9 GHz spectrum in some areas, and interact various regulatory organizations.
  • Comment FO: This WI did not have an acronym.

Objectives:

  • Promote C-V2X, including its existing (LTE-V2X) and future realizations, as the technology of choice for ITS.
  • Promote appropriate availability of radio spectrum for C-V2X where necessary in addition to 5.9 GHz, and promote the use of 5.9 GHz for safety-related ITS over other applications (e.g., RLANs, CBTC).
  • Comment FO: This WI did not have an acronym.

Objectives:

  • Quantify the future spectrum needs for 5G short-range V2X communications in the context of safety-related ITS spectrum allocation and 5G wide range communications.
  • Comment FO: This WI did not have an acronym.

Objectives:

  • Develop recorded test procedures to validate various performance and functional requirements of C-V2X technology covering both the laboratory/test bed and the field test environments.

Objectives:

  • Quantify future spectrum needs for 5G V2X communications related to ITS spectrum allocation for advanced use cases, including a technology assessment of the amount of radio spectrum needed to meet the key performance criteria related to the low frequency band (e.g. 5.9 GHz) as well as mmWave (e.g. 63–64 GHz) for various advanced ITS applications and a wide-area 4G/5G Uu interface.
  • Comment FO: This WI did not have an acronym.

Completed Work Items – 2017

Objective:

  • Establish a high-level plan for C-V2X trials in North America, including definition of trial scope and objectives, identification of suitable/preferred trial facilities, and guidance regarding preferred trial participant composition.

Objective:

  • Identify existing regional V2X application specifications that have some dependency on specific radio access technologies, such as ITS-G5/11p, and determine how these specifications can be adapted to interoperate with generic radio access technologies and, in particular, with the lower layers of ITS-Cellular specified by 3GPP.

Objective:

  • Develop the timeline of major functionalities and milestones describing the expected availability of monetizable items and associated business and/or operational model options.

 

Objectives:

  • Identify sensor data sharing requirements from planned automated driving applications, including architecture options, requirements and implications.
  • Conduct a gap analysis of ETSI ITS standards related to existing data objects and complete a technical report outlining the 5GAA framework for sensor data sharing for V2X applications.

Objective:

  • Prepare a survey report on finalized, on-going and planned test activities, established testbeds and simulation frameworks.

Objective:

  • Compile V2X communication terms and definitions to be used within the 5GAA.

Completed Work Items – 2023

Objectives:

  • Work with the Connected Motorcycle Consortium (CMC) to identify potential C-V2X technology solutions for
  • use cases for powered two-wheelers, focusing on safety aspects
  • This includes use cases enabled by external connectivity or sensors but also covers use cases that may profit or be enabled by the presence of external computing power, representing an attractive potential market even with low V2X penetration.

Objectives:

  • Identify and evaluate a selection of evolving and emerging technologies for positioning in line with the 5GAA roadmap for use automotive use cases.
  • Perform a gap analysis based on automotive use cases concerning selected technologies and provide feedback to relevant SDOs.

Objectives:

  • Cover a broad range of topics, ranging from the analysis of MEC-relevant use cases and requirements, both from a technical and business perspective, the collaboration with SDOs and industry groups (GSMA), the definition of a reference architecture with related deployment scenarios, an early study on security and privacy aspects, and the drafting of a plan for future experimental activities on MEC for automotive services, including public demos.

Objectives:

  • Highlight the vast array of new business opportunities that 5G will enable for the connected mobility ecosystem by moving the discussion beyond safety and automated driving to other innovative solutions and customer experiences.

Objectives:

  • Address the operational aspects of misbehaviour detection, explicitly looking into remediation classification, misbehaviour classification and misbehaviour remediation.

Objectives:

  • Analyse and evaluate the performance of 3GPP NR-V2X sidelink and draw conclusions and recommendations for its operation, including gap analysis covering future releases and engagements with relevant SDOs.

Objectives:

  • Address the issue of trustworthiness in relation to position information exchanged in the context of V2X communication(how much trust the ITS station can place on the received V2X message containing the positioning information).
  • Provide an overview of the current standards related to positioning, including the integrity of the position and confidence levels, and review the definitions and metrics used so far.

Objectives:

  • Develop and socialise guidance documents on C-V2X direct communications RSU deployment in the USA with a focus on Day 1 (messages, minimum performance, interoperability and certification) to foster real-world infrastructure deployments.

Objectives:

  • Accelerate the understanding and adoption of VRU protection services enabled by C-V2X to meet the 5GAA-proposed roadmap for deploying those services.
  • This objective is addressed by experimentation and demonstrating existing technology and standards. Exploiting and analysing the results of the experiments and demonstrations enabled an assessment of the existing standards and potential standardisation gaps, laying the ground for the mass deployment of VRU protection services.

Completed Work Items – 2022

Objectives:

  • Stimulate auto industry awareness in Conformity Assessment (CA) and conduct a study of current CA schemes being developed by global industry organizations.
  • Develop a framework for a harmonized conformance assessment for PC5 applicable to both roadside units and on-board units and attain support from global industry bodies and stakeholders

Objectives:

  • Define use cases and align the Use Case Roadmap for mass-market deployment of advanced driving use cases, including their technology and spectrum requirements.

Objectives:

  • Analyze the feasibility of distributed vehicle antennas from an implementation perspective and develop measurement strategies for the analysis.
  • Analyze the specification impact and the potential necessary changes, and provide output to relevant standardization organizations for possible requirements recommendations.

Objectives:

  • Secure consumer acceptance and trust in V2X technologies, and perform lawful processing of data while preserving system efficiency to deliver upon the benefits of both basic and advanced V2X services.

Objectives:

  • Produce a report which describes the actions which 5GAA and its members would need to take to ensure that relevant ETSI and CEPT deliverables are created as needed to support the 5GAA C-V2X Roadmap.

Objectives:

  • Provide awareness of the current state of misbehaviour developments in standards developing organizations, and propose action items to fill the existing gaps.

Objectives:

  • Continue incubation of new technical enablers, both use case specific and use case agnostic, with the intent of achieving sufficient maturity for transition to standards developing organizations .
  • Contribute to SDOs via a Liaison member, bringing up new developments in foundational enablers and protocols for review and consumption by TCs & TFs.

Objectives:

  • Review and update the specified methodology for the use case analysis for Predictive Quality of Service (QoS) related Service Level Requirements.
  • Develop potential enhancements to interfaces, signalling and architecture of the Predictive Quality of Service (QoS) system, including but not limited to the aspects related to edge cloud and interoperability.

Objectives:

  • Detect, propose and evaluate possibilities for telecommunication operators, vendors and further stakeholders to provide what is necessary in order to enable the car OEM to better treat safety.
  • Investigate processes and tools used to develop and operate the complete chain of the system, deriving a judgement on feasibility of those processes for safety.

Objectives:

  • Monitor the activities of standards developing organizations and provide regular updates of the ecosystem to 5GAA members to enable an early identification of risks and challenges in standardization.

Objectives:

  • Introduce tele-operation service provider relevant use cases and scenarios with a V2N2V nature and identify gaps and develop architecture solutions for the development of tele-operated driving services
  • Study framework requirements of a tele-operation service between vehicle and remote tele-operation centre in cross-mobile network operators, cross-original equipment manufacturers and cross-authority scenarios.

Objectives:

  • Produce a C-V2X tolling white paper using the experience from the technology and cost analysis to show the tolling industry how to find common benefit in C-V2X and the importance of C-V2X in the future Road Digitalization Roadmap.

Objectives:

  • Establish use case implementation descriptions realizing use cases’ Service Level Requirements for Automated Valet Parking (AVP), Informative Sensor sharing (HD map Collecting and Sharing), Sensor Sharing for Automated vehicles (AVs) and HD Sensor Sharing for AVs.
  • Contribute to overarching application system implementation specifications combining the respective use case implementation specifications, including potential interfaces to network layer and security layer.

Objectives:

  • Update and improve use case descriptions and corresponding Service Level Requirements in already published Technical Reports and White Papers.
  • Collect, harmonize, align, and integrate new use case descriptions developed in 5GAA and publish the third volume of the Technical Report on C-V2X Use Cases and Service Level Requirements.

Objectives:

  • Strengthen 5GAA members’ understanding of the state of play of V2X in China and improve the cooperation with and among Chinese members.

Objectives:

  • Publish an industry specification defining a system profile to enable US deployment of interoperable basic safety services using LTE-V2X direct communication over channel 183.

Objectives:

  • Establish qualitative general, functional and operational requirements to describe systems for the 5G evolution and beyond that would be useful for automotive solutions.
  • Provide a unified 5GAA opinion on evolving technologies and the expected transition path for the automotive ecosystem when moving from current 5G technology to its evolution, including potential threats and opportunities.

Completed Work Items – 2021

Objectives:

  • Gather evidence of the environmental benefits associated with C-V2X and assist in developing this evidence into a compelling narrative.
  • Assess the benefits of C-V2X deployment (both LTE-V2X and 5G-V2X direct and network-based communications) in terms of emission reduction by 2050 in Europe (and for US and Asia) considering various positive and negative externalities.

Objectives:

  • Identify and investigate further potential enhancements needed to provide Predictive Quality of Service (QoS) for C-V2X, investigate interoperability of network slices, and provide relevant recommendations to standards developing organizations (SDOs) and industry forums, e.g. 3GPP, ETSI, ISO and GSMA.

Objectives:

  • Demonstrate the use of multi-access edge computing (MEC) technology for automotive services, for example, when two distinct automotive vendors can truly test at least three use cases involving two distinct mobile network operators (MNOs) employing the network infrastructure provided by two distinct infrastructure vendors.
  • Increase the flexibility of the current network service architecture, reduce the deployment effort, and increase the interoperability among different stakeholders in the system.

Objectives:

  • Describe how existing 3GPP methods reduce and improve service interruption due to network reselection.
  • Provide an original equipment manufacturer (OEM) view on current and desired network reselection.

Objective:

  • Close the gap of the first spectrum needs study by analyzing several advanced use cases and consider additional items such as security overheads in a second release.

Objective:

  • Prepare a report which describes the 5GAA’s 5.9 GHz radio channel deployment options for use by LTE-V2X and NR-V2X across all regions, and describe relevant changes to existing regulatory frameworks – or the introduction of new regulatory frameworks – which may be required across all regions.

Objectives:

  • Update Use Case Technical Reports with updated use case descriptions and develop a white paper for the Wave 2 of use cases.
  • Provide a new set of use cases with their corresponding service level requirements (SLRs) to be summarized into a new TR.

Objectives:

  • Study and describe specific and technology dependent use case implementations that fulfil the service level requirements (SLRs) as defined in the technology agnostic 5GAA use case descriptions.
  • Develop corresponding descriptions for three exemplary use cases: Left Turn Assist (LTA), (Electronic) Emergency Brake (light) Warning (EEBL), and Traffic Jam Warning and Route Information.

Objective:

  • Define a standardized test method and metrics for vehicular antennas with the dominant emittance toward the outside of the vehicle, focusing on vehicular antennas for telecommunications (2G, 3G, 4G, 5G (< 7.125GHz)), vehicular antennas for direct communication between vehicles to road infrastructure (operating in the designated ITS frequency spectrum (5.9GHz range)), GNSS antennas and 3D-measurements (vehicle-mounted antenna element)

Objectives:

  • Focus on positioning method for vehicles and vulnerable road users (VRUs) and study both positioning methods employing cellular signals (5G/LTE/C-V2X) and the positioning methods integrated with other technologies.
  • Study the requirements of positioning, build the understanding of positioning system framework, and offer the corresponding technologies according to the requirements and environments.

Completed Work Items – 2020

Objective:

  • Analyze V2I deployment costs, including financial, economic and market aspects, to provide guidance to regulators, policymakers and other key stakeholders.
  • Analyse options with higher and lower levels of V2I-based infrastructure vs. V2N-based approach.

Objective:

  • Define and analyse the automotive use case requirements in terms of Quality of Service (QoS) using network slicing and analyze business value and identify the specific features required to support the automotive use cases that cover IoT and mobile broadband services.

Objectives:

  • Define use cases and align the Use Case Roadmap for mass-market deployment of advanced driving use cases, including their technology and spectrum requirements.

Map, assess and contribute to the identification of technical gaps (upper and lower layers, e.g. protocols, Rel. 18 requirements) and forward to relevant standards setting organizations (SSOs).

Objectives:

  • Define all necessary details for conducting the first 5GAA C-V2X Plugfest in the first quarter of 2019.
  • Define 5GAA requirements and timelines for conducting successive plugfests after the first quarter of 2019.

Objective:

  • Facilitate a harmonized industrial evolution and development of enhanced cellular V2X, starting with supporting the basic use cases with the already available C-V2X technologies such as 3GPP Rel-14/15 C-V2X and adopt new technologies for the use cases which cannot be served with current C-V2X

Objectives:

  • Establish a lightweight security system for C-V2X/5G-V2X communications by conducting a requirements analysis of regional privacy regulations to establish an overview of regional differences and define requirements for each region.
  • Analyze concepts to simplify the architecture and its impact on regional privacy compliance.

Objectives:

  • Identify structured and reasonable requirements on mobile networks relevant to spectrum auctioning to accommodate automotive use cases and enable mobile network operator (MNOs) to quantify associated investments.
  • Analyze licensed spectrum auctioning frameworks and other incentivizing initiatives, such as infrastructure leasing exceptions, where additional investments required by mobile network operators (MNOs) to fulfill requirements associated to automotive use cases are appropriately recognized.

Objectives:

  • Develop application-level groundwork for the next-generation services (Rel-16) with use cases involving complex message interactions for assisted and autonomous (Ll1-Ll5) and automated driving (supported by infrastructure).
  • Build prototypes and demonstrate next-generation applications (Rel-16 and further) to gain hands-on experience with some use cases to help stakeholders (OEMs, suppliers, road operators, regulators) understand how 5G NR can implement the concept of connected and automated vehicles for proximal vehicle-to-X coordination and cooperation.

Objective:

  • Solicit road operators’ views on their role in the deployment of ITS C-V2X services through a free form questionnaire to determine the road operator willingness to participate directly in future 5GAA discussions or events.

Objectives:

  • Develop and demonstrate a phased vulnerable road user (VRU) protection approach by defining a VRU protection roadmap.
  • Provide realistic paths for vulnerable road user (VRU) protection using cellular communications, differentiating C-V2X from 802.11p based technologies and set the stage for application of C-V2X to VRU protection.

Objectives:

  • Define the application layer reference architecture for the V2X service and recommend the application layer reference architecture of the V2X system.
  • Discuss other architecture related subjects to align with the coordinated 5GAA architecture.

 

Completed Work Items – 2019

Objective:

  • Identify, analyze and compare the advantages and disadvantages of V2I deployment using long-range (Uu) mobile networks and RSU (PC5) from a business perspective, reflecting how C-V2X enables synergies with both the transportation and telecommunications infrastructure, which includes leveraging existing mobile network infrastructure for C-ITS.

Objectives:

  • Work on the CEPT/ETSI-related activities by extending the ITS safety-related band at 5.9 GHz to allow coexistence of LTE V2X and Urban Rail to coexist with ITS-G5 within the 5,875-5,925 MHz frequency band.
  • Clarify ITS “co-frequency coexistence” statements, include future 3GPP releases and evolution, engage the urban rail community, engage with national administrations.

Objectives:

  • Develop a trial and interoperability testing framework that defines the deployment scenarios and uses cases, testing methodologies, key performance indicators (KPIs) to be tested.
  • Develop a 5GAA trial and interoperability testing strategy to capture the 5GAA testing priorities, including setting up a 5GAA testbed environment and planning multi-partner trials covering the priority test cases.

Objective:

  • Prepare input material for the work in ETSI TC ITS to amend the test specification required to use LTE-V2X as the underlying access layer technology.

Objectives:

  • Identify and evaluate potential architecture enhancements needed to provide predictable Quality of Service (QoS) for C-V2X in 5G for the automotive industry, utilizing network slicing and edge computing technologies.
  • Provide guidelines on the design of Network Slice Templates (NST) for the automotive industry that enable support for different categories of C-V2X use cases and 5GAA requirements.

Objectives:

  • Provide an assessment of the deployment roadmap for use cases.
  • Establish a mapping between use cases and potential technology candidates, e.g. 3GPP releases, sidelink and/or Uu requirements.

Objectives:

  • Define a framework for classifying use cases and requirements, identify prioritized use cases, functional requirements and key performance indicators (KPIs).
  • Perform a gap analysis and specify the extended set of prioritized use cases.

Objectives:

  • Identify the use cases that benefited from the presence of an application server, and based on the output, explore the V2X application server features and how the application server can be used to perform these use cases.

Completed Work Items – 2018

Objectives:

  • Develop consensus on operating models for system implementation, taking into account the various requirements arising from the planned networked transport services.
  • Investigate architectural paradigms such as cloud-based solutions, including edge computing aspects, and analyze solutions from the perspective of verification, confidentiality and privacy, identify requirements and key performance indicators (KPIs), and recommend further actions.

Objective:

  • Enable the development of a strategy for comprehensive testing, trials, demo pilots, and compliance assessment for V2X using cellular air interface specifications (i.e., including PC5 and Uu).

 

Objectives:

  • Promote C-V2X, including existing (LTE-V2X PC5 and Uu interfaces) and future realizations, as the technology of choice for ITS and promote ITS in 5.9 GHz spectrum in some areas, and interact various regulatory organizations.
  • Comment FO: This WI did not have an acronym.

Objectives:

  • Promote C-V2X, including its existing (LTE-V2X) and future realizations, as the technology of choice for ITS.
  • Promote appropriate availability of radio spectrum for C-V2X where necessary in addition to 5.9 GHz, and promote the use of 5.9 GHz for safety-related ITS over other applications (e.g., RLANs, CBTC).
  • Comment FO: This WI did not have an acronym.

Objectives:

  • Quantify the future spectrum needs for 5G short-range V2X communications in the context of safety-related ITS spectrum allocation and 5G wide range communications.
  • Comment FO: This WI did not have an acronym.

Objectives:

  • Develop recorded test procedures to validate various performance and functional requirements of C-V2X technology covering both the laboratory/test bed and the field test environments.

Objectives:

  • Quantify future spectrum needs for 5G V2X communications related to ITS spectrum allocation for advanced use cases, including a technology assessment of the amount of radio spectrum needed to meet the key performance criteria related to the low frequency band (e.g. 5.9 GHz) as well as mmWave (e.g. 63–64 GHz) for various advanced ITS applications and a wide-area 4G/5G Uu interface.
  • Comment FO: This WI did not have an acronym.

Completed Work Items – 2017

Objective:

  • Establish a high-level plan for C-V2X trials in North America, including definition of trial scope and objectives, identification of suitable/preferred trial facilities, and guidance regarding preferred trial participant composition.

Objective:

  • Identify existing regional V2X application specifications that have some dependency on specific radio access technologies, such as ITS-G5/11p, and determine how these specifications can be adapted to interoperate with generic radio access technologies and, in particular, with the lower layers of ITS-Cellular specified by 3GPP.

Objective:

  • Develop the timeline of major functionalities and milestones describing the expected availability of monetizable items and associated business and/or operational model options.

 

Objectives:

  • Identify sensor data sharing requirements from planned automated driving applications, including architecture options, requirements and implications.
  • Conduct a gap analysis of ETSI ITS standards related to existing data objects and complete a technical report outlining the 5GAA framework for sensor data sharing for V2X applications.

Objective:

  • Prepare a survey report on finalized, on-going and planned test activities, established testbeds and simulation frameworks.

Objective:

  • Compile V2X communication terms and definitions to be used within the 5GAA.

Active Work Items

This work item will drive the study on the trends and evolution of current technologies. The objectives of the work item consist of:

  • Establish qualitative general, functional and operational requirements that would describe systems for the5G evolution and beyond that would be useful for automotive solutions,
  • Conduct a SWOT analysis with the automotive industry with respect to evolving technologies in a timeframe of 5, 10 and/or 15 years,
  • Providing a unified 5GAA opinion (in the form of a white paper) on evolving technologies and the expected transition path for the Automotive
  • Ecosystem when moving from current 5G to its evolution, including the potential threats and opportunities.

This Work Item assesses the required communication technology to support Automated Valet Parking (AVP) as specified by the 5GAA Use Cases T-210023, T-190139 and T-190140 and their respective Service Level Requirements (SLR).

This Work Item assesses the required communication technology to support Automated Valet Parking (AVP) as specified by the 5GAA Use Cases T-210023, T-190139 and T-190140 and their respective Service Level Requirements (SLR).

This Work Item consists of:

  • Stimulate Auto Industry awareness in CA
  • Study of current CA schemes being developed by global industry organisations
  • Develop a framework for harmonized PC5 CA applicable to both RSUs and OBUs and attain support from global industry bodies and stakeholders

 
Publications
 

This Work Item aims at:

  • Create a list of devices and update it every 6 months
  • Define KPIs of the Dashboard and the format of the dashboard presentation
  • Verify 5GAA’s market predictions
  • Ensure legal compliance
  • Create the first dashboard for publication

 
Publications
 

A joint Work Item with the Connected Motorcycle Consortium, this WI will look into CV2X enabled use cases for motorcycles mainly focusing on safety

Definition of all Use Cases and alignment of UC roadmap for mass-market deployment of advanced driving Use Cases, inc. their technology and spectrum requirements.

A comprehensive overview of the privacy and data protection regulatory framework.

A report which describes the actions which 5GAA and its members would need to take in order to ensure that relevant ETSI and CEPT deliverables are created as needed to support the 5GAA C-V2X Roadmap.
 
Publications
 

This Work Item consists of:

  1. Moving toward federated MEC demos/trials (global MEC);
  2. MEC System interoperability and test framework;
  3. usage of predictive edge analytics and situation awareness for closed-loop adaptation in multi-MNO and multi-OEM MEC scenarios (synergy and inputs from NESQO,eNESQO,V2XSRA PRESA);

This Work Item aims at discussing attractive selling points for CV2X for both final customers and OEMs beyond the usually discussed ADAS and safety features.

This Work Item:

  • Provides awareness of current state of MBD developments in SDOs and trials/demos, and proposes action items to fill the existing gaps.
  • Delivers content on:  (1) concepts and terms definitions, V2X message stack, (2) overview of related/existing work and gaps, (3) Threat and Risk Assessment (TARA) and requirements for Day-1 applications, (4) determination of application domain-specific mitigation, and (5) legal aspects and recommendation of a strategy.

This Work Item aims at:

  • Continue incubation of new technical enablers, both UC specific and agnostic for transition to SDOs.
  • Contribute to SDOs via a Liaison member & Individual contributors from member companies will work directly on relevant standards projects on an ongoing basis.

This Work Item consists of:

  • Review and update the specified methodology for the UC’ analysis for Predictive QoS related SLRs.
  • Study application and system reactions.
  • Develop potential enhancements to interfaces, signalling and architecture of the P-QoS system, including but not limited to the aspects related to edge cloud and interoperability.
  • Provide input to SDOs.

 
Publications
 

This Work Item consists of:

  • Monitor SDOs activities on and provide regular updates of the ecosystem to 5GAA members. This will enable early identification of risks and challenges in standardisation.
  • Prepare contributions by 5GAA to critical SDOs.
  • Support WGs and WIs intending to provide inputs to SDOs.
  • Support 5GAA messaging in SDO related events.

This Work Item:

  • Explore the use of C-V2X to enable electronic toll collection in China (ETC)
  • Constructive advice about Investment, Performance Improvement and migration for C-V2X Tolling Implementation in China
  • Find common benefits between Road Industries and 5GAA

 
Publications
 

This Work Item consists of:

  • Update White Paper on C-V2X Use Cases: Methodology, Examples and Service Level Requirements [3].
  • Update TRs Vol. I [1] and Vol. II [2] as needed.
  • Update WP Vol. I [3] and Vol. II [4] as needed.
  • Create new TR (Vol. III) with new UCs.

This Work Item consists of:

  • Description of applicable measurement configurations
  • Description of test procedures
  • Definition of relevant metrics

 
Publications
 

Accelerate the understanding and adoption of VRU protection services enabled by C-V2X” in order to meet the 5GAA-proposed roadmap for the deployment of those services.

Completed Work Items – 2020

Lorem ipsum

Lorem ipsum

Completed Work Items – 2020

Lorem ipsum

Lorem ipsum

The Republic of Korea Picks C-V2X as its Technology of Choice

The Republic of Korea Picks C-V2X as its Technology of Choice

5GAA applauds the Republic of Korea’s decision[1] to select Cellular Vehicle-to-Everything (C-V2X) direct communications as its technology of choice, complementing C-V2X mobile network communications to offer a synergetic platform for connected mobility.

Following this decision, Korean officials also announced follow-up measures including the revision of technical regulation standards. Since 2022, Korea allocates a significant portion of the 5.9 GHz frequency band to C-V2X direct communications i.e., 20 MHz has been allocated to LTE-V2X Direct for various ITS applications including basic safety services. 

The Korean announcement paves the way for safer, smarter and greener transport ecosystem, benefiting all road users. It wraps up an extensive process that entailed a comprehensive analysis of the global technology trend as well as intensive testing and exchanges to consider the needs of the automotive and telecommunications industries, road operators, and public authorities.

Korea’s decision to opt for C-V2X, with specific bandwidth for LTE-V2X Direct, marks a pivotal moment in the global advancement of intelligent transportation. This resolution fully aligns with the 5GAA’s vision for a connected and safer future on the roads, setting an important precedent for other nations to follow. 5GAA and its members stand ready to implement this bold vision.

Maxime Flament, Chief Technology Officer, 5GAA

With this decision, the Republic of Korea joins a growing global trend towards the use of C-V2X as the technology of choice for the mass deployment of intelligent transport systems as a catalyst for wide-ranging societal, economic and environmental benefits.

[1] Ministry of Science & ICT, Korea


About 5GAA

The 5G Automotive Association (5GAA) is a global, cross-industry organization of over 120 members, including leading global automakers, Tier-1 suppliers, mobile operators, semiconductor companies, and test equipment vendors. 5GAA members work together to develop end-to-end solutions for future mobility and transport services. 5GAA is committed to helping define and develop the next generation of connected mobility, automated vehicles, and intelligent transport solutions based on C-V2X. For more information, visit our website.

For media inquiries, please contact:

marcom@5gaa.org

12th Automotive World 2020

12th Automotive World 2020

On 16 January, Yuji Aburakawa from 5GAA member NTTDoCoMo is going to participate as a speaker in a session entitled “5G and Cellular V2X Changes Mobility” on behalf of 5GAA, with a presentation on “Telecom and Automotive Unite to Realize Connected Mobility“.

5GAA Showcases Cutting-Edge C-V2X Technology, Pioneering the Future of Vehicle Connectivity

5GAA Showcases Cutting-Edge C-V2X Technology, Pioneering the Future of Vehicle Connectivity

Detroit, October 26th, 2023 — The 5G Automotive Association (5GAA) welcomes you to an exciting display of cutting-edge innovation at the forefront of vehicle connectivity. The event, held at the Mcity Test Facility at the University of Michigan in Ann Arbor, featured a series of live demonstrations and a static showcase that underline the potential of C-V2X technology in making our roads safer and our journeys more secure.

Our live demonstrations are designed to present ready-to-deploy applications that rely on seamless communications, service interoperability, real-time safety enhancements, and driving assistance. These showcases will immerse you in real-life scenarios, both on-track and on open roads, highlighting the remarkable capabilities of Cellular Vehicle-to-Everything (C-V2X) direct communications and mobile network communications. From real-time collision warnings to lane merge notifications, curve speed alerts on open roads, and Vulnerable Road User (VRU) protection in urban environments, our demonstrations underscore our unwavering commitment to making our roads safer and our journeys more secure.

“In the fast-paced world of vehicle connectivity, 5GAA is at the forefront, showcasing the immense potential of C-V2X technology”, said Maxime Flament, 5GAA CTO. “We are dedicated to making our roads safer and our journeys more secure. The live demonstrations and showcases in Detroit reflect our commitment to reducing road fatalities and creating a smoother, safer driving experience for all road users.” 

Highlights of the Event:

Day One Safety Benefits of C-V2X Direct

Organized by Qualcomm, Commsignia, and the University of Michigan Transportation Research Institute, this immersive experience will showcase vehicle connectivity first-hand. Equipped with an onboard unit (OBU), the vehicle will demonstrate several safety benefits of C-V2X (Cellular Vehicle-to-Everything) direct communication from day one leveraging Roadside Units (RSUs). As the vehicle navigates the road, the driver will receive various warning messages, including:

> Real-time alerts for forward collision and electronic emergency brake lights.

> Notifications to merge lanes when approaching a construction work zone.

> Curve speed warnings in open-road environments.

The technology is primarily focused on critical safety scenarios to reduce road fatalities. It serves as a testament to the possibility of achieving a smooth and secure driving experience for all road users.

Interoperability of VRU Protection Services via Network Connection

In recent years, members of the 5GAA have collaborated to research, examine, and test potential solutions aimed at improving the safety of Vulnerable Road Users (VRUs). Our collective efforts will demonstrate the compatibility of various VRU protection services through a live showcase. During this demonstration, organized by Anritsu, Bosch, Commsignia, Keysight, T-Mobile, LG, and Verizon, participants will have the opportunity to receive safety messages, such as alerts, which are transmitted to vehicles in advance to alert drivers about the presence of pedestrians nearby. These alerts are delivered efficiently via mobile network communication with minimal latency, thanks to innovative technologies like Multi-access Edge Computing (MEC). Furthermore, through a “digital twin” with advanced software modeling, participants can witness first-hand how network planning and performance can be estimated. Various network Key Performance Indicators (KPIs) will be closely monitored to ensure optimal performance for VRU safety applications.

Authentication as a Service (AaaS) – Static Showcase

At the core of Verizon and LG’s presentation lies AaaS, a dynamic platform built on industry standards. This platform plays a crucial role in managing the security lifecycle of V2X (Vehicle-to-Everything) communication by offering:

> Provisioning of new services and information.

> Operational functions, including activation, detection of misbehavior, safety-enhancement systems, and intelligent filtering.

> The capability to revoke access in the event of network security threats.

The presentation showcases a V2N2V (Vehicle-to-Network-to-Vehicle) scenario, where Basic Safety Messages are transmitted via the Verizon 5G network from the vehicle to the vRSU (Virtual Roadside Unit), integrated within Verizon’s Multi-Access Edge Computing (MEC) infrastructure. These messages are then routed back to the vehicle.

This system protects the confidentiality of your data meeting the end-to-end latency requirements.

Smart City and Connected Infrastructure using Uu-based Solution

Verizon and HAAS Alert are showcasing a display of ”connected safety” digital alerting examples.

While the network-connected demonstration vehicle navigates the track, it receives messages from the cloud, which are shown on the infotainment screen well in advance. This gives the driver a foresight window of 15-20 seconds before encountering any possible hazards.

Passengers will encounter the following scenarios:

> An approaching emergency vehicle

> An upcoming active School Zone

> An alert for a pedestrian crossing

We invite you to join us on this remarkable journey to experience the benefits of connected vehicles. Together, we have the potential to reduce road fatalities and create a smoother, safer driving experience for all.

About 5GAA

The 5G Automotive Association (5GAA) is a global, cross-industry organization of over 120 members, including leading global automakers, Tier-1 suppliers, mobile operators, semiconductor companies, and test equipment vendors. 5GAA members work together to develop end-to-end solutions for future mobility and transport services. 5GAA is committed to helping define and develop the next generation of connected mobility, automated vehicle, and intelligent transport solutions based on C-V2X. For more information, visit our website.

About the University of Michigan

The University of Michigan is one of the nation’s top public universities, and has been a leader in research, learning and teaching for more than 200 years. It is home to several research centers focused on mobility and transportation. Mcity is a public-private mobility research partnership led by U-M and operates the Mcity Test Facility, a purpose-built, real-world environment for testing advanced mobility vehicles and technologies. The U-M Transportation Research Institute is one of the largest research institutes at U-M and a partner of choice for industry leaders, foundations, and government agencies. The Center for Connected and Automated Transportation, based at UMTRI, is the U.S. Department of Transportation’s University Transportation Center for the Midwest region. 

Media Contact

Raluca Tarcea

Communications Manager

raluca.tarcea@5gaa.org

Press Release: Automotive Giants at 5GAA Unite around the Future of Connected Mobility

Press Release: Automotive Giants at 5GAA Unite around the Future of Connected Mobility

Brussels, 28 September 2023– 5GAA announces a ground-breaking initiative to give new impetus to connected cars in Europe, based on 5G-V2X technology including direct communications, moving beyond past technology disputes.

Ready to move forward with state-of-the-art technology, the major European carmakers, representing jointly over 70% market share[1], want to demonstrate their commitment to bridging differences and working together towards the widespread adoption of 5G-V2X.

5G-V2X includes 5G-V2X mobile network communications (already deployed in vehicles since 2021 on our roads), complemented with 5G-V2X direct communications. 5G-V2X will provide essential and advanced connected car services, enhancing road safety, especially for vulnerable road users, decreasing traffic congestion, and improving overall mobility efficiency and driver comfort.

Following the provisional deal between the Council and the Parliament in June 2023 on the revision of the Directive on Intelligent Transport Systems (ITS)[2], 5GAA looks forward to the EU institutions adopting the final text as soon as possible. The revised Directive will give the industry the necessary legal certainty to invest in 5G-V2X direct communications deployment, as it explicitly acknowledges technology neutrality.

The letter highlights the need for convergence and action to break the current stalemate and reposition the European Union in the global race for automotive connectivity as other world regions are making swift progress.

By pledging their commitment to this open letter, leading OEMs demonstrate their commitment to bridging differences and working together towards the widespread adoption of 5G-V2X technology, the second generation of V2X technologies. This collective marks a pivotal starting point in Europe’s “race to 5G-V2X” spearheaded by 5GAA and its members. Extensive efforts are underway to tackle the technical and regulatory challenges that impede the timely deployment of 5G-V2X, aligning with the 5GAA roadmap

Christoph Voigt, Chairman of the 5GAA Board and Head of R&D Connectivity at Audi.

With this initiative and recognising the need to strike a consensus, 5GAA and its members have charted a unified path forward for Europe in an open letter to policymakers, regulatory bodies, and industry players. The 5GAA announcement echoes the recently published position[3] of the French Automotive Industry representative body (Plateforme Automobile – PFA, representing also 5GAA members like Renault, Stellantis and Valeo) designating 5G-V2X as the technology of choice for V2X direct communication.


Our Member Vehicle Manufacturers Quotes

BMW is dedicated to investing in research and development to further harness the potential of 5G-V2X technology. By supporting the adoption of 5G-V2X technology, we aim to create a connected ecosystem that enhances the overall driving experience and contributes to a greener and smarter future.

Nicolai Kraemer, Vice President Connected Vehicle Platforms, BMW.

We look forward to the next steps the industry is taking for the broader deployment of technology to help enable a future where vehicles can ‘talk’ to similarly equipped vehicles, devices and road infrastructure which has the potential to help provide safer and more enjoyable on-road experiences.

Andre Welch, Director of Government Relations, Ford Motor Company.

JLR is committed to C-V2X delivery within its new generation of vehicles and fully supports 5GAA’s letter promoting European implementation of C-V2X.

Murray Paul, Director of Public Affairs, JLR

Renault’s approach to safety and substantial investments in safety-related R&D illustrates its transition from a traditional car manufacturer to a leading mobility services and tech company.

Arnaud Belloni, VP Renault Brand, Global Marketing

Renault’s safety vision within Human First program goes beyond designing safe cars. Renault is striving for technological advancements and driving innovation towards keeping everybody safe on the roads.

Katrin Matthes, Renault Software & System VP Innovation and Technology

Stellantis in pursuing its Dare Forward 2030 strategy encompassing the technology evolution for the connected and autonomous vehicle.

Francesco Lilli, Stellantis Global Head of Advanced Connectivity

5GAA V2X roadmap draws a common direction to enable on a global basis an efficient and safe mobility.

El Khamis Kadiri, Stellantis Connectivity & EE Expert

Media Contact

5GAA Communications Team: marcom@5gaa.org


[1] ACEA Passenger Car Registrations 2022, January 2023

[2] Council and Parliament strike a deal on the roll-out of intelligent transport systems, 08 June 2023

[3] https://pfa-auto.fr/wp-content/uploads/2023/07/PTF_V2X_short-range-radio-technology-choice_2023.pdf

5GAA to participate in the ITS World Congress 2022 in Los Angeles

5GAA to participate in the ITS World Congress 2022 in Los Angeles

The 5G Automotive Association (5GAA) will again join the ITS World Congress, the global flagship event for intelligent transportation systems, taking place in Los Angeles from September 18 to 22. This occasion will bring together policymakers, researchers, and industry representatives from all over the world to explore this year’s central theme, “Transformation by Transportation”. 

The ITS World Congress is coming back to the United States and gathering the entire mobility ecosystem to provide all attendees with an exciting opportunity to discover, connect, and learn. The 5G Automotive Association is pleased to join; to that end, the team has curated a comprehensive programme for the kick-off day – Monday, September 19. 5GAA’s initiatives are set to bring journalists, industry members, public authorities and road operators closer to the association’s work and the latest advances of our members in C-V2X technologies. 

5GAA’s plans at the ITSWC include:  

  • Showcasing our latest developments at the 5GAA booth, #419, in the main Exhibit Hall 
  • Scheduling 1-to-1 meetings with our experts to discuss industry progress, innovation developments and members’ technology advances 
  • Guided tours for media, industry, and government officials
  • Holding two speaking sessions at the Education Hall in collaboration with our members 

Join our Guided Tours

On September 19, from 11 AM to 12 PM (PDT), 5GAA will host a Press Tour, led by journalist Brian Maguire. It includes scheduled visits to some of the association’s members, like Continental, Intel, Nokia, Commsignia and more, who will hold demos at their booths to showcase their latest C-V2X advancements. Our members’ representatives will be available to address media questions after the demonstrations.   Registrations are open here.

At the same time, we encourage industry stakeholders and government officials to register for their respective tours, taking place on September 20 between 9.30 AM and 11.15 AM (PDT), which will follow the same order.

5GAA Speaking Session at ITSWC2022 

The “Connected Driving: C-V2X on the Road” conference will also take place on September 19 from 1 to 3 PM (PDT) at the Education Hall, featuring two panel discussions with top-level guests: 

1. C-V2X for Safety Services

Today’s C-V2X safety services, such as traffic signal pre-emption and road hazard information, save lives. Our panel will cover the importance of the 30 MHz allocation in the U.S. for current usage, but also the need to secure 40 MHz additional spectrum for advanced V2X safety services.

2. Mobility Benefits

V2X deployment is advancing globally, enabling the creation of unprecedented information to aid Traffic Management and Operations. The emergence of C-V2X supports widespread deployment of mobility services, and represents a win-win for traffic operations, industry, and, most importantly, people/ 

Register here for the conference, or book a 1-to-1 meeting with a 5GAA representative. 

 

Side activities: 5GAA CTO and members’ panels 

  • September 18, 1 to 4.30 PM PDT – Digital Infrastructure Workshop, sponsored by Qualcomm, with Maxime Flament (5GAA)
  • September 21, 10 to 11.30 AM PDT – “Findings of Original Equipment Manufacturers Deployment into a Connected Vehicle Deployment” session, with Aaron Weinfield (DENSO)
  • September 21, 1 to 4 PM PDT – “5G Connectivity” workshop, with Maxime Flament (5GAA), Coen Bresser (ERTICO/ITS Europe), Ralf Weber (Qualcomm), Julia Rainer (Audi AG).

For any questions about our plans at the ITS World Congress, don’t hesitate to contact the Marcom team at marcom@5gaa.org.  

Live Trial of 5G Connected Car Concept in Blacksburg, Virginia | Video

Live Trial of 5G Connected Car Concept in Blacksburg, Virginia | Video

Last March, the Commonwealth of Virginia held a live trial of a new driver and pedestrian safety concept that allows near-real-time notification of roadway hazards through 5G and edge technologies. The trial was one of the three conducted internationally by a historic public-private collaboration, organised by the 5G Automotive Association (5GAA) and eight member companies representing leading technology companies from around the globe. A related European live trial was conducted in 2021 in the city of Turin, Italy. The North American live trial, on the other hand, was conducted on the Virginia Smart Road operated by the Virginia Tech Transportation Institute in Blacksburg, VA. It was the first of its kind in North America.

To find out more, you can now watch this video explaining the tested concept:

5GAA at MWC Barcelona 2022 “Turning Connected and Safe Mobility into Reality” | Conference material

5GAA at MWC Barcelona 2022 “Turning Connected and Safe Mobility into Reality” | Conference material

On 2nd March, 5GAA experts and member spokespersons shared their views on how the deployment of C-V2X technologies is turning connected and safe mobility into reality from now and in the next few years, during the conference “Turning Connected and Safe Mobility into Reality” at the Barcelona edition of GSMA’s Mobile World Congress.

The conference, moderated by Freddie Holmes, Special Correspondent at Automotive World, offered an overview of the broad-scale improvements that connected mobility can bring to the global automotive system, starting with a first session on the 5G-V2X deployment landscape in different regions, such as Europe, China, and the US. Speakers underlined the need for increased ecosystem cooperation and cross-border projects to ensure reliable access to 5G networks to all users. The second session focused on the safety aspects and benefits brought by the technology, including protecting vulnerable road users.

The event concluded with an insightful panel discussion on mobility data, with the participation of representatives from the entire ecosystem value chain. Panellists discussed how smart cities and infrastructure could help make data-driven decisions that inform how we pave the path for the future of mobility and the crucial role of data standardisation and reliability and new business models to foster investments.

The event welcomed, in person or through virtual messages, high-level representatives of 5GAA’s member companies Deutsche Telekom, Verizon, China Mobile, Harman, Continental, Telefonica, Qualcomm, BMW, Huawei, Intel , ZTE, Stellantis.

In case you didn’t have the possibility to attend the conference in Barcelona, here you can find some of the insightful materials presented by our members.

Bringing 5G Consumer Experiences to Automotive Industry At Scale
Ramaswamy Iyer, Senior Vice-President and Head of Connectivity SBU, Harman

Vishnu Sundaram, Senior Vice President, Stellantis

 

5G + C-V2X: Pave the way for C-ITS and Auto-Driving
Xu Ling, Standard Director, ZTE

 

China overview
Wai Chen, Chief Scientist, China Mobile

 


Presentations:

The Digital Guardian Angel -A Cellular-assisted VRU protection solution
Frank Foersterling, Head of Government, Liaison & Engagement, Continental

Driving the Smart Mobility Revolution
Leticia Lopez Domingo, Technology Innovation Expert, Telefonica

5G capabilities as a game changer for automotive connectivity
Dennis Nikles, Vice-President IOT, Deutsche Telekom

5GAA discusses how C-V2X turns Connected and Safe Mobility into Reality at Mobile World Congress 2022 in Barcelona

5GAA discusses how C-V2X turns Connected and Safe Mobility into Reality at Mobile World Congress 2022 in Barcelona

Barcelona, 3 March 2022 – The 5G Automotive Association (5GAA), alongside its members, disclosed the latest global deployments of C-V2X technology, highlighting how 5G data will deeply transform the mobility system by making it safer and more efficient at GSMA’s Mobile World Congress 2022 in Barcelona on Wednesday 2 March 2022. 

The 5G Automotive Association was back this year at Barcelona’s edition of the Mobile World Congress, the world’s leading exhibition for the connectivity industry, to disclose the cellular technology shaping the future of mobility alongside its member.

Today, connected driving is a reality. Over 200 million connected vehicles are equipped with C-V2X applications sharing hazard and traffic warnings on the road. Applied to the automotive sector, 5G is upgrading revolutionary in-car connectivity, allowing seamless and cooperative communication between vehicles, infrastructure, and surroundings.

On 2nd March, 5GAA experts and member spokespersons shared their views on how the deployment of C-V2X technologies is turning connected and safe mobility into reality from now and in the next few years. Moreover, the association had the pleasure to have Peter Stuckmann, Head of Unit, Future Connectivity Systems, DG CONNECT, European Commission, addressing the participants and highlighting the crucial role of investments in 5G and infrastructures to foster the European green and digital transition.

As noted by Johannes Springer, 5GAA Director-General, the association that celebrates its 5th Anniversary has been working intensely to bridge the gap between automotive, technology, and telecom industries and promote the 5G-V2X (vehicle-to-everything) technology as a comprehensive and integrated platform for connected vehicles, embracing digital transformations as opportunities for mobility innovations.

The conference, moderated by Freddie Holmes, Special Correspondent at Automotive World, offered an overview on the broad-scale improvements that connected mobility can bring to the global automotive system, starting with a first session on the 5G-V2X deployment landscape in different regions, such as Europe, China, and the US. Speakers underlined the need for increased ecosystem cooperation and cross-border projects to ensure reliable access to 5G networks to all users. The second session focused on the safety aspects and benefits brought by the technology, including protecting vulnerable road users.

The event concluded with an insightful panel discussion on mobility data, with the participation of representatives from the entire ecosystem value chain. Panellists discussed how smart cities and infrastructure could help make data-driven decisions that inform how we pave the path for the future of mobility and the crucial role of data standardisation and reliability and new business models to foster investments.

The event welcomed, in person or through virtual messages, high-level representatives of 5GAA’s member companies Deutsche Telekom, Verizon, China Mobile, Harman, Continental, Telefonica, Qualcomm, BMW, Huawei, Intel , ZTE, Stellantis.

In addition,5GAA hosted a Press & Industry guided tour across the booths of key member companies to share their latest C-V2X technology developments with journalists and industry analysts, focusing on road safety and digital infrastructures.

Companies featured in the tour included:

  • Deutsche Telekom presented the Automated Valet Parking in a 5G network use case, in partnership with BMW and Valeo, which delivers high reliability and stable latency to ensure the necessary safety requirements. Moreover, the company presented its Mobility Connect solutions, offering drivers 5G seamless connectivity solutions
  • ZTE Corporation showcased its 5G-V2X products and solutions, including 5G-V2X module, OBU, RSU, V2X cloud platform and other cases
  • Qualcomm presented its Snapdragon Digital Chassis Platform: a set of technology solutions for building connected and intelligent vehicles that are safer, customisable, immersive and continually upgradeable, and Auto Connectivity Platform to support ubiquitous connectivity in and around the vehicle
  • Intel with its Superdemo, developed with its partners Capgemini and Advantech for their 5G Road Side Unit solution for Smart City & Transportation use cases focusing on vulnerable users protection Digital Twin infrastructure for sustainable cities
  • Rohde & Schwarz showcased its 5G and C-V2X solutions for development in the laboratory and verification in the field to ensure the performance and reliability of critical automotive communications
  • Anritsu presented a joint demonstration in partnership with dSPACE. The demonstration showed the use of 5G Network Slicing in an Advanced Intersection Collision Warning (AICW) use case, using Hardware In the Loop (HIL) test and simulation system to provide a realistic sensor simulation to an OBU that is being tested

We would like to thank all our participants, member companies and speakers, for making it such an insightful event, clearly demonstrated the added value of ecosystem cooperation for the future of the transportation system.

Download the agenda of the event here.

For additional information, please get in touch at marcom@5gaa.org.

Please find the video contribution from Ramaswamy Iyer, Senior Vice-President and Head of Connectivity SBU, Harman that unfortunately, we have not been able to show during the conference due to technical problems.