Flagship-pilot: large-scale demonstrations of CCAM (CCAM Partnership)
Large-scale demonstrations of Connected, Cooperative and Automated Mobility (CCAM) systems across individual, shared, and freight transport domains.
This call funds a flagship pilot to demonstrate advanced CCAM technologies in real-world mixed traffic environments. It aims to validate and showcase automated mobility solutions for people and goods, focusing on safety, inclusivity, and sustainability. Projects should integrate multiple domains and coordinate with existing European initiatives.
Likely relevant for
- Automotive OEMs and Tier-1 suppliers
- Mobility service providers
- Public transport and logistics operators
- Research institutions in automated mobility
- Technology developers in AI, V2X, cybersecurity
- Municipalities and regional transport authorities
Project signals
What it funds
- Large-scale demonstrations of CCAM systems for individual, shared/public transport, and freight domains
- Validation of enabling technologies for automation and connectivity
- Assessment of technology maturity and deployment readiness
- User and societal engagement including SSH disciplines
- Development of business models and regulatory recommendations
- Coordination with European CCAM initiatives and standards
Expected outcomes
- Demonstrated CCAM solutions in mixed traffic for at least 12 months
- Validated technologies extending operational design domains
- Recommendations for regulatory facilitation of automated vehicles
- Business models supporting post-project deployment and scalability
- Increased societal readiness and user acceptance
- Interoperability across vehicle brands and regions
Who can apply / participate
- Legal entities established in eligible EU Member States and Associated Countries
- Consortia including private and public stakeholders across the CCAM value chain
- Entities with capacity for large-scale demonstrations and technology validation
- Consortia should include a broad representation of OEMs, Tier-1 suppliers, mobility operators, infrastructure providers, public authorities, research institutions, and community groups
- SSH experts must be included to address societal impact
- Entities from EU Member States and Horizon Europe Associated Countries are eligible
- Entities controlled by China or established in China are not eligible
- Participants must comply with Horizon Europe eligibility rules and restrictions
- Use of Copernicus and/or Galileo/EGNOS data is required if satellite data is used
- Exact consortium size and composition requirements
- Specific funding rates and co-funding rules
Must check before shortlisting
- Eligibility of participant countries and entities
- Consortium composition requirements
- Budget and funding rate details
- Specific coordination with related CSA projects
Money
The call offers a total budget of approximately €100 million for a single expected grant under this action. Funding rates and detailed budget allocations must be checked in the official call documents.
- Maximum EU contribution — 100000000EURIndicative maximum contribution for the flagship pilot Innovation Action.
Application notes
- Single-stage submission model. Proposals must comply with page limits and layout as per Horizon Europe General Annexes.
- Proposal page limits and layout as per Annex A and E of Horizon Europe Work Programme General Annexes
- Eligible countries as per Annex B of Horizon Europe Work Programme General Annexes
- Restrictions on participation of entities controlled by China
- Use of Copernicus and Galileo/EGNOS data if applicable
- Financial and operational capacity requirements as per Annex C
- Evaluation criteria and procedures as per Annex D and F
- Prepare proposal following the specific application form in the Submission System
- Ensure consortium meets eligibility and capacity requirements
- Submit proposal before the deadline via the Funding & Tenders Portal
- Coordinate with related CSA projects for alignment
- Legal entities established in China or controlled by China are not eligible
- All vehicles used in demonstrations must be environmentally friendly, preferably electric
- SSH expertise inclusion is mandatory for societal impact assessment
Derived from official EU Funding portal source · updated 2 Jul 2026, 09:53 UTC. Use this as a shortlisting aid; the official call text remains authoritative.
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Official source text
Fine print from the EU source record. Expand when you need the original wording.
Topic description
Expected Outcome: This flagship pilot is the culmination of the entire activity catalogue carried out by the CCAM Partnership since its launch in 2021. It will combine in one project the most promising CCAM use-cases across three key domains, with the technological advancements from all its R&I clusters [1] supporting and enabling CCAM systems and services towards market uptake. This action is expected to contribute to all the following outcomes: Large-scale demonstrations of inclusive, user-oriented, and well-integrated CCAM systems and services for people and goods in mixed traffic through Field Operational Tests (FOTs), Technology Pilots, and Living Labs, building upon advanced and emerging SAE Level 2 systems to move towards SAE Level 3 and 4 functionalities, at multiple test sites and corridors showcasing CCAM potential [2] , for a minimum of 12 months. Validation of enabling technologies that facilitate the extension of Operational Design Domains (ODDs) in large-scale operations and enhance perception performance under poor lighting and adverse weather conditions in large-scale demonstrations and pilots. Assessment of deployment readiness and demonstration of technological maturity focusing on their reliability, security, and real-world applicability. Identification of the remaining technological and societal development needs to accelerate deployment and drive user and societal demand. These demonstrations will strengthen the connection with users and society through a co-creative process, ensuring that technological developments align with real-world needs and societal expectations. Recommendations for regulatory action aimed at facilitating the deployment of Automated Vehicles (AVs) in Europe, by engaging with relevant policy and regulatory bodies. Identification and selection of viable business models for each of the use-cases explored per domain, aiming for continued operation after the flagship pilot through private investment or national/local public funding including mechanisms for transferability and replicability to enable a broader application of results to other cities and regions. Scope: CCAM solutions are expected to provide a more user-centred, inclusive mobility system that enhances safety, reduces congestion, lowers harmful emissions, and contributes to decarbonization. In addition, CCAM solutions enhance transport effectiveness, thereby strengthening Europe's competitiveness in the global mobility sector. Novel mobility services can enable seamless integration with existing services such as public transport and logistics, while higher levels of automation are expected to boost transport productivity and efficiency. However, the benefits of these solutions must be proven through large-scale demonstrations, validating their effectiveness for both people and goods. It is also of key importance to integrate and test enabling vehicle technologies and to validate trusted communication and cyber security, as well as real time information transmission. Moreover, a comprehensive assessment of technology maturity is necessary, evaluating the readiness of automated driving functions within mixed traffic conditions and in confined areas. This evaluation helps determine the readiness of automation technologies for deployment, considering factors such as operational reliability, regulatory compliance, and user acceptance. By fostering a systematic approach to large-scale demonstrations, technology validation, and maturity assessment, and by prioritising zero-emission mobility, these efforts contribute to the seamless integration of CCAM solutions across the entire public and private transport ecosystem. The proposed action is expected to demonstrate different CCAM solutions and technologies in all the following domains: Individual mobility within mixed traffic environments, encompassing urban, suburban, motorway, and rural settings, with a focus on the seamless integration of automated and conventional vehicles. Use cases should consider diverse road conditions, infrastructure variability, traffic dynamics, and user needs, ensuring safe, efficient, accessible and user-centric mobility solutions. A key aspect is the integration of advanced technologies (e.g. AI, V2X, cybersecurity, precise positioning, etc.) and the validation of technological enablers ensuring that automation solutions are robust, scalable, and adaptable to all CCAM use cases for people and goods. Shared mobility and public transport operations in urban, regional and rural areas, for end-to-end journeys aiming to enhance safety, accessibility, equity, and sustainability, including improving business cases for mobility providers. Validate realistic door-to-door mobility services including links to mobility hubs, ridesharing and parking areas to enhance end-to-end journeys in urban areas and regions. Freight transport for hub-to-hub, corridors, and logistics hubs on public roads and confined areas, integrating logistics, fleet and terminal operators. Validate realistic end-to-end use cases, such as logistics hubs at airports, ports, cross-border, and transhipment terminals, connecting use-cases in confined operations with TEN-T freight corridors. Where relevant, intersecting social factors, such as gender, age, social origin and income level should be considered. All new vehicles acquired for the project's activities, as well as all vehicles participating in final demonstrations conducted in public spaces, are expected to be environmentally friendly, with a special focus on electric vehicles, to maximise synergies and ensure the future integration of solutions into the sustainable mobility mass market. The proposed action should integrate all the following common activities across domains: Ensuring close coordination and synergies with innovation actions planned under the European Connected and Autonomous Vehicle Alliance, (ECAVA), in particular the Autonomous driving technology roadmap, announced by the European Automotive Action Plan. Leveraging on the Coordination and Support Action, HORIZON-CL5-2025-01-D6-02: Preparing for large-scale CCAM demonstrations. [3] Leveraging on the Coordination and Support Action HORIZON-CL5-2024-D6-01-05 Robust Knowledge and Know-How transfer for Key-Deployment Pathways and implementation of the EU-CEM. [4] Ensuring close coordination, once launched, with HORIZON-CL4-2027-04-DATA-08 : Demand-side 3C pilot demonstrators on converged Telco Edge Cloud Infrastructure , in particular the pilot demonstrator on unlocking telco-edge-cloud functions for the mobility ecosystem. Ensuring inclusive engagement of all key European private stakeholders (e.g., shared mobility, public transport and logistics operators, infrastructure providers, associations, SMEs and start-ups, in particular technology developers), and notably a broad representation of the European OEMs, in addition to Tier-1 suppliers, as well as public players (e.g., municipalities/cities/regions, motorway operators, emergency service operators, public transport authorities, research institutions) and community groups (e.g., user groups) for the transport of people and goods, across their entire value chain, in the designated domains. Each of these shall contribute to European technological innovation, sovereignty and competitiveness and none shall contrive the security and/or public policy interests of the Union. Assessing the transferability, adaptability, and scalability of advanced technologies such as photonics and Generative AI as key enablers for the extension of ODDs , ensuring broad deployment potential. Executing public engagement and awareness campaigns to increase societal readiness and promoting the use of CCAM as well as implementing CCAM education and training programs. Assessing the degree to which the demonstrated services comply with current regulatory requirements and providing recommendations to ensure full compliance. Bringing forth real-world evidence on the effects, impacts, and long-term implications of integrating mixed CCAM solutions into the mobility system including long-term impact for users. Exemplifying concrete and strategic benefits of vehicle-vehicle or vehicle-infrastructure cooperation to improve safety, optimize traffic flow, and enhance the overall efficiency of CCAM transportation networks considering both digital and physical infrastructure and including guidance for remote operations and management. Using data from large-scale demonstrations to identify and extract pertinent scenarios and edge cases, ensuring these insights are systematically integrated into related databases for validation scenarios, while also exploring data sharing opportunities with relevant authorities. Facilitating the interoperability of connected and automated systems across vehicle brands, regions, and Member States and Associated Countries, taking into consideration different traffic environments and road densities, also in line with the Automotive Action Plan on large-scale cross-border testbeds. Encouraging collaboration with the European Software-defined Vehicle (SDV) initiative by adopting existing interfaces and proposing new ones developed within the project for potential inclusion in the SDV framework. This topic requires the effective contribution of SSH disciplines and the involvement of SSH experts and institutions, as well as the inclusion of relevant SSH expertise, in order to produce meaningful and significant effects enhancing the societal impact of the related research activities. This topic implements the co-programmed European Partnership on ‘Connected, Cooperative and Automated Mobility’ (CCAM). As such, projects resulting from this topic will be expected to report on results to the European Partnership ‘Connected, Cooperative and Automated Mobility’ (CCAM) in support of the monitoring of its KPIs. Projects funded under this topic are expected to build strongly upon, and collaborate closely with, the CSA resulting from HORIZON-CL5-2025-04-D6-02 [5] , “Preparing for large-scale CCAM demonstrations”, ensuring that the implementation of their activities and findings aligns with the strategic direction outlined in the CSA. Projects resulting from this topic are expected to apply the European Common Evaluation Methodology (EU-CEM) for CCAM [6] . null Activities are expected to achieve TRL 7-8 by the end of the project – see General Annex B. [1] https://www.ccam.eu/our-actions/clusters/ [2] Such as previous experience in testing, developing and deploying CCAM services. [3] https://cordis.europa.eu/programme/id/HORIZON_HORIZON-CL5-2025-04-D6-02 [4] https://cordis.europa.eu/project/id/101203053 [5] https://ec.europa.eu/info/funding-tenders/opportunities/portal/screen/opportunities/topic-details/HORIZON-CL5-2025-04-D6-02?keywords=ccam&isExactMatch=true&status=31094501,31094502,31094503&frameworkProgramme=43108390&order=DESC&pageNumber=1&pageSize=50&sortBy=relevance [6] See the evaluation methodology here .
Destination
This Destination includes activities addressing safe and smart mobility services for passengers and goods. This Destination contributes directly to the Strategic Plan’s Key Strategic Orientations ‘ Green transition ’, ‘ Digital transition ’ and ‘ A more resilient, competitive, inclusive and democratic Europe ’. In line with the Strategic Plan, the overall expected impact of this Destination is to contribute to the ‘Multimodal systems and services for climate-neutral, smart and safe mobility’ . The main impacts to be generated by topics under this Destination are: Connected, Cooperative and Automated Mobility (CCAM) Improved mobility for people and goods in all weather conditions, ensuring safe, shared, inclusive, affordable, attractive, and accessible door-to-door mobility, for private and public transport in mixed traffic and confined areas, as well as open roads. Seamless integration of CCAM solutions into existing transport ecosystems to ensure interoperability, promote multimodality, enhance traffic safety, catering to diverse user needs and behaviours. Resilient, climate-neutral, and sustainable mobility solutions with reduced carbon footprints, resulting in greener, less congested, cost-effective, and demand-responsive transport systems. Increased competitiveness of the transport system using secure and hyper-advanced technologies such as real-time perception, situational awareness, and decision-making systems, based on trustworthy Artificial Intelligence (including Edge and Generative AI), satellite navigation, smart traffic management, and tools for software development for CCAM applications. Multimodal and sustainable transport systems for passengers and goods Enhanced resilience of transport networks through improved operational efficiency for both passenger and intermodal freight transport, future-proofed mobility systems supporting EU competitiveness while ensuring affordable and accessible transport for all passengers. Safety and resilience Drastic reduction in road fatalities for all types of users, especially on rural areas Improved resilience of the public transport system via the use of AI Advanced technologies and methods for improved reliability in complex environments for aviation Legal entities established in China are not eligible to participate in both Research and Innovation Actions (RIAs) and Innovation Actions (IAs) falling under this destination. For additional information please see “Restrictions on the participation of legal entities established in China” found in General Annex B of the General Annexes.
Conditions and documents
General conditions
1. Admissibility Conditions: Proposal page limit and layout
2. Eligible Countries
described in Annex B of the Work Programme General Annexes.
A number of non-EU/non-Associated Countries that are not automatically eligible for funding have made specific provisions for making funding available for their participants in Horizon Europe projects. See the information in the Horizon Europe Programme Guide.
3. Other Eligible Conditions
In line with the “restriction on control in innovation actions in critical technology areas” delineated in General Annex B of the General Annexes, entities established in an eligible country but which are directly or indirectly controlled by China or by a legal entity established in China are not eligible to participate in the action.
If projects use satellite-based earth observation, positioning, navigation and/or related timing data and services, beneficiaries must make use of Copernicus and/or Galileo/EGNOS (other data and services may additionally be used).
described in Annex B of the Work Programme General Annexes.
4. Financial and operational capacity and exclusion
described in Annex C of the Work Programme General Annexes.
5a. Evaluation and award: Award criteria, scoring and thresholds
are described in Annex D of the Work Programme General Annexes.
5b. Evaluation and award: Submission and evaluation processes
are described in Annex F of the Work Programme General Annexes and the Online Manual.
5c. Evaluation and award: Indicative timeline for evaluation and grant agreement
described in Annex F of the Work Programme General Annexes.
6. Legal and financial set-up of the grants
The granting authority may, up to 4 years after the end of the action, object to a transfer of ownership or to the exclusive licensing of results, as set out in the specific provision of Annex 5.
described in Annex G of the Work Programme General Annexes.
Specific conditions
Not applicable.
Application and evaluation forms and model grant agreement (MGA):
Application form templates — the application form specific to this call is available in the Submission System
Standard application form (HE RIA, IA)
Evaluation form templates — will be used with the necessary adaptations
Standard evaluation form (HE RIA, IA)
Guidance
Model Grant Agreements (MGA)
Call-specific instructions
Not applicable.
Additional documents:
HE Main Work Programme 2026-2027 – 1. General Introduction
HE Main Work Programme 2026-2027 – 8. Climate, Energy and Mobility
HE Main Work Programme 2026-2027 – 15. General Annexes
HE Framework Programme 2021/695
HE Specific Programme Decision 2021/764
EU Financial Regulation 2024/2509
Decision authorising the use of lump sum contributions under the Horizon Europe Programme
Rules for Legal Entity Validation, LEAR Appointment and Financial Capacity Assessment
EU Grants AGA — Annotated Model Grant Agreement
Funding & Tenders Portal Online Manual
Support information
Online Manual is your guide on the procedures from proposal submission to managing your grant. Horizon Europe Programme Guide contains the detailed guidance to the structure, budget and political priorities of Horizon Europe. Funding & Tenders Portal FAQ – find the answers to most frequently asked questions on submission of proposals, evaluation and grant management. Research Enquiry Service – ask questions about any aspect of European research in general and the EU Research Framework Programmes in particular. National Contact Points (NCPs) – get guidance, practical information and assistance on participation in Horizon Europe. There are also NCPs in many non-EU and non-associated countries (‘third-countries’). Enterprise Europe Network – contact your EEN national contact for advice to businesses with special focus on SMEs. The support includes guidance on the EU research funding. IT Helpdesk – contact the Funding & Tenders Portal IT helpdesk for questions such as forgotten passwords, access rights and roles, technical aspects of submission of proposals, etc. European IPR Helpdesk assists you on intellectual property issues. CEN-CENELEC Research Helpdesk and ETSI Research Helpdesk – the European Standards Organisations advise you how to tackle standardisation in your project proposal. The European Charter for Researchers and the Code of Conduct for their recruitment – consult the general principles and requirements specifying the roles, responsibilities and entitlements of researchers, employers and funders of researchers. Partner Search help you find a partner organisation for your proposal.
Raw budget overview
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