Innovative technologies and solutions to improve wind energy systems supporting the Strategic Energy Technology (SET) Plan on wind
eu HORIZON-CL5-2026-09-D3-03 · Horizon Europe (HORIZON)
| Status | open |
|---|---|
| Opens | 05 May 2026 |
| Deadline | 15 Sep 2026 — 20 days |
| Action | HORIZON Innovation Actions |
| Official page | https://ec.europa.eu/info/funding-tenders/opportunities/portal/screen/opportunit… |
| Fetched | 2026-08-24 16:32:17+00:00 |
Exclusions detected in the scope
Scope
Expected Outcome: Project results are expected to contribute to all the following expected outcomes: Advance in the achievement of the Strategic Energy Technology (SET) Plan’s research and innovation priorities and targets for wind energy; Efficient and effective support to wind energy research and innovation through alignment and cooperation among different actors, avoiding fragmentation of efforts; Energy producers and consumers benefit from increased performance of wind energy technologies with the focus on efficiency and flexibility, reduced cost, improved reliability and sustainability, operation and maintenance, safety, robustness and security during all stages of the lifetime of a wind energy farm from installation, operation and maintenance to decommissioning; Increased contribution of wind energy to the energy system, with minimal impacts on health and the environment (notably biodiversity and pollution) and at the lowest possible cost. Scope: The action contributes to address the Strategic Energy Technology (SET) Plan’s research and innovation priorities and targets for wind energy, as defined by the Implementation Working Group (IWG) on wind energy, the European Technology and Innovation Platform on wind energy (ETIP Wind) [1] and the European Energy Research Alliance (EERA) joint programme on wind energy [2] . The activities carried out by the project will pertain to the following priority R&I areas: Industrialisation, scale-up and competitiveness: mass production supported by automation and reliable supply chains, design for large volume manufacturing and deployment, design for reliable and lasting products and improved construction and installation methods, digitalisation and artificial intelligence (AI) in industrial environment. Optimisation and further digitalisation of operation and maintenance: integration of artificial intelligence (AI), robotics, advanced repair methodologies and new sensor technologies, interoperability among wind farm sub-systems, advanced communication technologies and cybersecurity, innovative component replacement solutions and quick connect/disconnect systems for mooring lines and inter-array cables. Wind energy system integration: definition and modelling of future system needs, advanced grid capabilities, interoperability, solutions to effectively manage curtailment, integration with energy storage technologies and hybrid plants, distributed wind energy. Sustainability and circularity: material substitution for decarbonisation, material reduction, recycling methods, lifetime extension via re-using, refurbishi…