Development of innovative tools, processes, equipment and technologies through responses to disasters and emergencies for search and rescue in hazardous conditions
Develops tools, equipment and technologies — drones, robotics, remote sensing, communications — for search and rescue in hazardous disaster conditions.
Description
Expected outcome
Project results are expected to contribute to some or all of the following expected outcomes: Creation of cutting-edge tools, processes, equipment and technologies to enhance disaster and emergency response capabilities for various practitioners as well as for assets, such as vehicles, aircraft, and heavy equipment; Taking into consideration existing technologies, development of autonomous drones, robotics, and other technologies specifically designed for emergency medical response and search and rescue operations in hazardous conditions such as wildfires, earthquakes and large-scale events; Improvement of response efficiency and safety for survivors and emergency practitioners through the adoption of advanced, technology-driven solutions in disaster scenarios; Consider needs of existing EU-level capacities, emergency reserves, and stockpiling in the deployment of the assets and being able to move them.
Scope
The scope of this topic is the development of innovative tools, equipment, and technologies to enhance the capabilities of emergency responders operating in complex and hazardous disaster environments. By leveraging advancements in smart protective equipment, in robotics, autonomous systems, remote sensing, communication and human sensor technologies, the aim is to improve the efficiency, safety, and effectiveness of emergency medical response and search and rescue operations, particularly in high-risk scenarios, such as wildfires, earthquakes and large-scale trauma events. Proposals should explore the design, testing, and validation of innovative solutions capable of performing critical tasks in disaster-stricken areas. These technologies should be tailored to operate in extreme conditions, including high temperatures, unstable terrains, and low-visibility environments and beneficial to all individuals regardless of their age, gender or ability. Research should address challenges related to autonomous navigation, AI-driven decision-making, real-time situational awareness, and seamless integration with existing command-and-control systems used by disaster management. Collaboration of different practitioners should be supported to support proper market uptake. Efforts should be made to enhance interoperability and data-sharing capabilities between various platforms, emergency response teams, and crisis management systems. A key aspect of this research should be the practical deployment and validation of these technologies through field exercises and simulations in real-world disaster scenarios. User-driven design approaches, prioritising inclusivity and accessibilities should ensure that developed solutions align with the operational needs of responders in disasters., Proposals should develop a command-and-control solution that allows organisation of all activities, ensuring a swift, coordinated, and effective response to any disaster with clear plan for uptake after the project. Projects should conduct a stakeholder or market analysis and a roadmap or plan for uptake of the developed methodologies, findings, and technologies to the industry, the research and innovation community, and the relevant authorities. The current response capacities of the European Civil Protection Pool its capacity gaps , and the rescEU strategic reserve as well as the EU Stockpiling Strategy should be taken into account in the roadmap to ensure needs-based approach. Thus, the proposals could consider innovation for heavier assets, such as flood containment and high-capacity pumping, transport or response aircraft, shelters and power generators, ground firefighting vehicles and aerial firefighting helicopters. Furthermore, proposals should consider ethical, legal, and social implications associated with the deployment of autonomous technologies in emergency response.
What this means for cities and regions
Civil protection authorities, fire and rescue services and first responders as practitioners in the consortium. Topic budget €8 million; 2 grants expected; around €4 million per project. Opens 6 May 2026; closes 5 November 2026. The scope names remote sensing and autonomous systems; Copernicus emergency mapping and Galileo positioning are core inputs for responders in wildfires and earthquakes.
Key facts
Submission deadline
5 November 2026, 17:00 (Brussels time)
Published
Opens
Programme
Total envelope
Per project
Expected grants
Co-funding rate
Eligibility
Eligible countries
Eligible NUTS regions
—Eligible organisation types
Min. consortium size
—Min. partner countries
—Eligibility notes
Type of action for this topic
HORIZON Innovation Actions (HORIZON Lump Sum Grant).
Who can apply
- Any legal entity (public body, private body, NGO, university, research organisation, SME, large company) established in an EU Member State (including Overseas Countries and Territories), or in a Horizon Europe Associated Country.
- The list of Horizon Europe Associated Countries is maintained on the EU Funding & Tenders Portal.
Consortium rule for this topic
Proposals must be submitted by a consortium of at least 3 independent legal entities, each established in a different EU Member State or Horizon Europe Associated Country, of which at least one must be established in an EU Member State.
Co-financing rate
- Research and Innovation Actions (RIA): 100% of eligible direct costs + 25% flat-rate indirect costs.
- Innovation Actions (IA): 70% of eligible direct costs (100% for non-profit legal entities) + 25% flat-rate indirect costs.
- Coordination and Support Actions (CSA): 100%.
The applicable Type of Action is indicated on the topic record in the Funding & Tenders Portal.
Restrictions and special cases
- Natural persons not eligible except sole traders.
- International organisations and the JRC are eligible.
- Other EU bodies cannot participate.
- Financial support to third parties is allowed where the topic explicitly provides for it.
EU restrictive measures (TEU Article 29 / TFEU Article 215) and EU conditionality measures (Regulation 2020/2092) apply. Currently this excludes Hungarian public-interest trusts established under Hungarian Act IX of 2021 (Council Implementing Decision (EU) 2022/2506).
Space data condition
If the project uses satellite-based Earth observation, positioning, navigation or related timing data and services, beneficiaries must make use of Copernicus and/or Galileo/EGNOS. Other data and services may be used in addition.
Participants this topic requires
This topic requires the active involvement, as beneficiaries, of at least 2 practitioner organisations (first responders) and 2 medical emergency authorities from at least 3 different EU Member States or Associated Countries.
Classification
Thematic domains
Activity types
Space relevance
Tier B — space tools are implicitly needed to deliver the call's outcomes.
Space services
Sources
HORIZON-CL3-2026-01-DRS-03
Ingested September 20th, 2026
Sibling topics under this call
Designing new ways of risk awareness and enhanced disaster preparedness
Designs new ways of risk awareness and enhanced disaster preparedness for communities and authorities.
Multi-hazard approach and cumulative / cascading impacts
Develops a multi-hazard approach addressing cumulative and cascading disaster impacts.
Open topic on driving innovation uptake of disaster risk solutions
Drives the uptake of innovative disaster-risk-management solutions through demonstrations and market analysis.
Climate security and civil preparedness — pre- and post-crisis solutions
Develops climate-security and civil-preparedness solutions covering pre- and post-crisis phases.
Tools and processes to support stress tests of critical infrastructure
Develops tools and processes for virtual and physical stress tests of critical infrastructure against natural, accidental and malicious threats.
Security challenges of the green transition in urban and peri-urban areas
Addresses security challenges arising from the green transition in urban and peri-urban areas.
Targeted innovative capabilities for the resilience of critical entities to natural hazards
Builds targeted innovative capabilities for the resilience of critical entities to natural hazards.
Related opportunities
Supporting sustainable and smart urban mobility in Europe (CIVITAS)
Funds the coordination of the CIVITAS initiative: sharing and scaling sustainable urban mobility solutions across European cities.
Energy-efficient urban and sub-urban public transport, complemented by shared mobility
Demonstrates energy-efficient urban and sub-urban public-transport solutions complemented by shared mobility for climate-neutral cities.
Transition to low-temperature heating solutions in multi-apartment buildings
Demonstrates the transition to low-temperature heating in multi-apartment buildings supporting climate-neutral city goals.