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"EIC Advanced Innovation Challenges: Accelerating Physical AI: Embodied Intelligence for the Next Frontier of AI-Powered Robotics" is currently closed and not accepting applications.
EIC Advanced Innovation Challenges: Accelerating Physical AI: Embodied Intelligence for the Next Frontier of AI-Powered Robotics is sponsored by European Innovation Council (EIC) under Horizon Europe. This opportunity supports mission-aligned projects and measurable outcomes.
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Accelerating Physical AI: Embodied Intelligence for the Next Frontier of AI-Powered Robotics | Horizon-europe. gouv.
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2026 au 05. 02. 2026 Evènement d'envergure nationale qui vise à fédérer les entreprises innovantes d’Auvergne-Rhône-Alpes et à mettre en lumière les acteurs clés de l’écosystème technologique et entrepreneurial.
Ce topic appartient à l'appel EIC Advanced Innovation Challenge Accelerating Physical AI: Embodied Intelligence for the Next Frontier of AI-Powered Robotics Call : EIC Advanced Innovation Challenge Call Identifier : HORIZON-EIC-2026-AIC This Challenge will support the ambitions of the AI Act, Apply AI Strategy.
The AI powered robotics models developed under this Challenge are expected to comply with the EU concept for Trustworthy AI and the relevant ethical principles with due attention paid to data quality, transparency and accountability, privacy, security and safety.
In the medium to longer term, it is expected to reduce European dependencies and support end users in leveraging advances in AI to enhance their products and develop new capabilities that will contribute to: Strengthened European leadership in physical AI, reducing reliance on non-European technology providers, and Contribution to EU priorities in sustainability, resilience, digital transformation, and industrial competitiveness.
This is a two-stage Challenge competition of which the ultimate ambition is to deliver scalable prototypes, validated in a relevant real-world environment. Solutions supported under the Challenge are expected to demonstrate both the novelty and applicability of the proposed Physical AI technology, while mitigating associated risks. Applicant to Stage 1 must also have a clear outlook on the potential longer-term impact(s).
Stage1- Solution validation and benchmarking Applicants with disruptive physical AI systems that have achieved a prototype (i.e. at least TRL 4) will be invited to: Refine and validate the prototype in a relevant environment to demonstrate the core innovation (e.g., new perception (multimodal), actuation, continual learning, or autonomy capability, etc.).
in the end use case Develop a methodology for performance assessment Assess ethical, data governance and scalability considerations Identify challenges to integration such as safety, certification or scalability with view to identifying risks and exploring options for overcoming barriers for adoption including in cases where products’ risks are not covered by the AI Act Conduct initial performance benchmarking, and Develop an initial market analysis, business plan and model.
The outputs of Stage 1 will be assessed for progress against the following milestones: Evidence of technical viability with initial performance data that benchmarks performance and disruptive potential against the state-of-the-art in at least one pilot case within the specified application area, and Clear commitment from end users and stakeholders to further develop the physical AI solution in Stage 2.
To maximise impact, foster collaboration, and accelerate learning across funded teams, Progress to Stage 2 will be contingent on delivering a full proposal which will be assessed alongside the milestones achieved under Stage 1.
Stage 2 - Development and user testing Applicants for Stage 2 will be expected to further develop and validate a Physical AI system through the following activities: Build and test (ensure at least two deployments loops) a robust, integrated solution capable of autonomous operation in complex or semi-structured environments (e.g., pilot deployment in real world environment, etc.) to reach TRL 6-7 Address scalability and manufacturability: show that the solution can be scaled or adapted for broader integration and deployment Conduct necessary testing, documentation, and compliance activities towards certification or regulatory approval of the adapted solution Organisation of consultation meetings/workshops with industrial end users, regulators, standard setting bodies or other relevant stakeholders to gather further needs and feedback, and Develop a roadmap to commercialisation: refine market analysis, and validate business plan including stakeholder engagement, and identification of scaling strategies At the end of Stage 2, projects will be expected to have: Delivered a robust, integrated solution capable of autonomous operation in complex or semi-structured environments i.e. capable of pilot deployment in real world environment Demonstrated reliability, adaptability, energy/resource efficiency, and safe human-AI interaction, and Provided evidence of necessary testing, documentation, and compliance activities towards certification or regulatory approval for the adapted solution The integration of AI into physical systems is accelerating apace.
Such integration will enable machines and systems to perceive, act, and interact autonomously in complex, real-world settings. This Challenge aims to accelerate the development towards integration, deployment and commercialisation of breakthrough Physical AI solutions that will enhance Europe’s technological sovereignty, sustainability, and global competitiveness.
This Challenge seeks proposals for developing disruptive Physical AI innovations that demonstrate at least two of the following characteristics: Intelligent Perception and Cognition - Encompasses robust sensing, understanding, and real-time reasoning capabilities. Adaptive Learning and Optimisation - Focuses on continuous improvement, domain-specific adaptation, and intelligent resource management.
Autonomous Decision-Making and Collective Intelligence - Combines real-time problem-solving with autonomous action and swarm coordination in dynamic environments. Human-AI Collaboration and Interaction - Encompasses safe, intuitive interfaces and collaborative robotics for human-AI teamwork. Physical Integration and Innovation - Focuses on developing novel sensors, actuators, and materials that advance embodied AI capabilities.
The solutions must also focus on addressing pressing needs in at least one of the following application areas: Disaster response and civil security physical agents: AI-powered robotic systems designed to act before, during, or immediately after disasters (natural or man-made), with the aim of saving lives, ensuring safety, and restoring normalcy in hazardous, unpredictable environments.
Autonomous labs for Scientific Discovery: self-directed scientific environments where AI and robotics design, execute, and analyse experiments with minimal human intervention. Personal or professional robot assistants: AI-powered robots designed to support individuals or professionals by automating repetitive, menial, or complex tasks in homes, workplaces, or industrial settings.
The Physical AI solutions that will be designed and developed under this Challenge should be in accordance with principles of Responsible AI, Trustworthiness, Security and Human Centrism, ensuring transparency, accountability, privacy, safety, and ethical alignment.
Applicants must demonstrate the interest of potential end users and integrators with a view to supporting the application and testing of the proposed solutions in a real-world environment.
To enable this, they should have: an initial physical AI system prototype tested in the lab access to an appropriate infrastructure for data collection and testing, and a challenging use case formulated by a potential end-user, supported by a letter of intent or a letter of intent from a robotics integrator, confirming their interest aligned to the needs of the application domain. Trouver des partenaires potentiels
Scoring criteria used to review proposals for this grant.
According to the current listing, eligibility includes: Applicants must have an initial prototype at minimum TRL 4, access to infrastructure for data collection and testing, and a letter of intent from a potential end-user or robotics integrator. Deep tech innovators targeting Physical AI systems in disaster response, autonomous scientific labs, or robot assistant domains. Confirm the full requirements in the official notice before applying.
The current listing shows €6,000,000. Verify award ceilings, matching requirements, and allowable costs in the official notice.
The published deadline was February 26, 2026, which has passed. Check the official notice for any future application windows before investing time in a proposal.
EIC Advanced Innovation Challenges: Accelerating Physical AI: Embodied Intelligence for the Next Frontier of AI-Powered Robotics is funded by European Innovation Council (EIC) under Horizon Europe. Verify program details on the funder's official page before applying.
This listing is flagged as international in scope. Check the official notice for country-specific restrictions before applying.
Applications go through the funder's official portal — the Apply Now link on this page goes there directly.
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