Improved system design for innovative PV applications (EUPI-PV Partnership)
Innovate photovoltaic system designs for agrivoltaics or offshore/nearshore PV to boost energy output, sustainability, and EU solar goals.
This call seeks projects to improve photovoltaic (PV) systems for agriculture and offshore/nearshore applications. It aims to optimize energy production while protecting biodiversity and land or sea use. Projects should demonstrate advanced system designs, resilience to climate change, and societal acceptance, targeting TRL 7-8 by project end.
Likely relevant for
- Renewable energy technology developers
- Agrivoltaics system designers
- Offshore PV technology innovators
- Energy system integrators
- Environmental impact researchers
- Social sciences experts in energy transitions
Project signals
What it funds
- Development of innovative PV system designs for agrivoltaics or offshore/nearshore applications
- Comprehensive system modeling for energy yield and environmental impact
- Advanced components and architectures minimizing land/sea impact
- Resilience and adaptation to climate change
- Standardisation and permitting process definition
- System demonstrators of minimum 5 MW in various EU climate/sea zones
- Societal acceptance, sustainability, and policy integration
- Business case and exploitation strategy including scalability and commercialization
Expected outcomes
- Sustainable co-production of crops and PV electricity with ecological benefits
- Reinforced European PV value chain and new business models
- Minimized environmental and landscape impact
- Improved designs reducing CAPEX and OPEX and lowering LCoE
- Integrated policy design overcoming socio-technical deployment challenges
- Strong societal acceptance and energy justice in agriPV and offshore PV deployment
Who can apply / participate
- Research organisations
- Industry and SMEs
- Public bodies
- Universities
- Consortia including SSH experts
- Proposals must address either agrivoltaics or offshore/nearshore PV, not both
- Involvement of social sciences and humanities (SSH) disciplines is required
- Consortium should include stakeholders for societal acceptance and policy integration
- Eligible entities from EU Member States and Associated Countries
- Legal entities established in China are not eligible
- Projects must demonstrate capacity for system demonstrators of at least 5 MW
- Activities expected to reach TRL 7-8 by project end
- Use of Copernicus and/or Galileo/EGNOS data if satellite-based earth observation is involved
- Specific consortium size and composition requirements
- Exact funding rates and maximum budget per participant
Must check before shortlisting
- Eligibility of participant countries and entities
- Compliance with lump sum funding model
- Alignment with TRL 7-8 target
- Consortium composition and SSH involvement requirements
Money
Total budget of approximately €30 million for 4 expected grants in 2026. Minimum and maximum contribution per grant is €7.5 million. Funding is provided as lump sums.
- Total budget — 30000000EURFor 4 grants combined
- Minimum grant per project — 7500000EURLump sum funding
- Maximum grant per project — 7500000EURLump sum funding
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 described in Annex A and E of Horizon Europe General Annexes
- Eligible countries as per Annex B of Horizon Europe General Annexes
- Use of Copernicus and/or Galileo/EGNOS data if applicable
- Financial and operational capacity requirements as per Annex C
- Evaluation criteria and award process as per Annex D and F
- Prepare proposal addressing either agrivoltaics or offshore/nearshore PV scope
- Include SSH expertise and societal acceptance considerations
- Develop exploitation and dissemination plan with business case
- Submit proposal by deadline 1 December 2026 via Funding & Tenders Portal
- Ensure compliance with lump sum funding and eligibility criteria
- Projects must achieve TRL 7-8 by end of project
- Legal entities established in China are not eligible
- At least two proposals will be funded in each area (agrivoltaics and offshore/nearshore PV) if thresholds are met
- Granting authority may object to transfer of ownership or exclusive licensing up to 4 years after project end
Derived from official EU Funding portal source · updated 22 Jun 2026, 15:28 UTC. Use this as a shortlisting aid; the official call text remains authoritative.
Related calls
These funding calls are closely related and may be worth considering as part of the same funding landscape.
Official source text
Fine print from the EU source record. Expand when you need the original wording.
Topic description
Expected Outcome: Agrivoltaics or the co-location of agricultural activity and PV electricity production is a novel form of PV deployment which could provide farmers with diversified revenue sources and ecological benefits, while reducing land use competition, siting restrictions or adverse impacts on biodiversity and agricultural production. Optimizing system designs and business practices will help to enable simultaneous land use creating synergy for both agriculture and electricity production; this can benefit farmers, lower PV costs and enable the European Union to reach the goals of the EU solar energy strategy. Similarly, offshore/nearshore PV systems represent a tremendous deployment potential in Europe and globally, due to their advantages in conserving land resources and optimizing light utilization. However, prevailing technical challenges limit deployment in most sea conditions usually found in Europe. Project results are therefore expected to contribute to some of the following expected outcomes, depending on the proposed system (agriPV or offshore/nearshore PV): Harvesting of crops and photovoltaic electricity, providing sustainable solutions for energy production/use/efficiency, soil and biodiversity protection and water conservation. Reinforce the European PV value chain, introduce new business models and open new markets for novel, bankable agri or offshore/nearshore PV systems. Minimise the impact of PV on landscape/sea and environment exploiting its modularity and synergies of use. Promote offshore wind and PV co-location and system integration. Significant improvement of designs that reduce both CAPEX and OPEX, maximize energy output and thus reduce LCoE. Promote integrated and multi-dimensional policy design to overcome socio-technical challenges for agri and offshore/nearshore PV deployment. Scope: Proposals must address only one of the two areas (agriPV or offshore/nearshore PV). They are expected to demonstrate: A comprehensive (system) modelling for an accurate and reliable energy yield assessment with comparable methodologies for biodiversity, plant-yield and quality in the case of agriPV, as well as power generation. Advanced system components and system concepts/architectures of adequate scale that minimise impact on land/sea/environment while maximizing energy output/optimising connection to the grid. Resilience and adaptation of the systems to climate change impacts (extreme events, or in the case of agriPV, changing agricultural practices and/or crops choices, etc.). Standardisation for module and structure design for these applications. Permitting process definition. System demonstrators of adequate scale (min 5 MW altogether) at different EU climate/sea zones. Achieving societal acceptance and sustainability in agriPV development requires clarity in permitting procedures, promoting energy justice principles, mitigating agronomic risks, and balancing economic development with environmental conservation (notably biodiversity). These dimensions need to be addressed holistically with the involvement of policymakers, industry stakeholders, and local communities working towards a just and equitable deployment of agriPV. In the case of offshore/nearshore PV, aesthetic appreciation, as well as possible conflicts of interest related to water areas (with e.g., commercial shipping, fishing, sand extraction, military use, and recreational sailing) or colocation should be looked at. Whenever the expected exploitation of project results entails developing, creating, manufacturing and marketing a product or process, or creating and providing a service, the plan for the exploitation and dissemination of results must include a strategy for such exploitation as well as a strong business case and sound exploitation strategy. The exploitation plan should include preliminary plans for scalability, commercialisation, and deployment (feasibility study, business plan) indicating the possible funding sources to be potentially used (in particular the Innovation Fund). This topic requires the effective contribution of SSH disciplines and the involvement of SSH experts, 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 for Innovation in Photovoltaics (EUPI-PV). As such, projects resulting from this topic will be expected to report on the results to the European Partnership for Innovation in Photovoltaics (EUPI-PV) in support of the monitoring of its KPIs. null Activities are expected to achieve TRL 7-8 by the end of the project – see General Annex B. Activities may start at any TRL.
Destination
This Destination includes activities targeting a sustainable, secure and competitive energy supply. In line with the scope of cluster 5, this includes activities in the areas of renewable energy; energy system, grids and storage; as well as Carbon Capture, Utilisation and Storage (CCUS). 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 ‘Ensuring more sustainable, secure and competitive energy supply through solutions for smart energy systems based on renewable energy solutions’ . This destination contributes to the activities of the Strategic Energy Technology Plan (SET Plan) and its implementation working groups. The main impacts to be generated by topics under this Destination are: Renewable energy Energy producers have access to efficient and competitive European renewable energy and renewable fuel technologies with a solid knowledge base and are able to deploy them to enhance the EU’s energy security and reach its climate neutrality objectives, in a sustainable way in environmental (e.g., biodiversity, multiple uses of land and water, natural resources, pollution) and socioeconomic terms, and in line with the Sustainable Development Goals. Technology providers have access to European, competitive, resilient, reliable, sustainable, and affordable value chains of renewable energy and renewable fuel technologies including emerging ones, and with strong export potential to supply both the EU internal and global markets. They benefit also from circular renewable energy technologies that are safe and sustainable by design with reduced and diversified external dependence on critical raw materials [1] . Economic sectors benefit from better integration of renewable energy and renewable fuel-based solutions that are, among others, competitive, cost-effective, efficient, flexible, reliable, and sustainable. Such integration is facilitated through digitalisation and integration of artificial intelligence of renewable energy technologies that provide network stability and reliability. European industries benefit from a reinforced export potential of renewable energy and renewable fuel technologies, also through international partnerships, and become more competitive in innovative renewable energy technologies in Europe and globally. European researchers benefit from a stronger community and from a reinforced scientific basis on renewable energy and renewable fuel technologies including emerging ones, also through international collaborations. European citizens have access to an energy market that is fair and equitable, more resilient, uses all different types of local renewable energy resources, and is less dependent on fossil fuels imports. Citizens experience less fuel and energy poverty, and also benefit from new employment and upskilling opportunities. Local communities benefit from a more decentralized, affordable, and secure energy system and from multiple uses of land and water. Energy systems, grids and storage R&I actions will support the just digital and green transformation of the energy system through advanced solutions for accelerating the energy systems integration and decarbonisation . The developed clean, sustainable solutions will contribute to making the energy system work better for actors and supply more reliable, resilient and secure energy – even under increasingly more frequent extreme climate events. The solutions developed will contribute to increase flexibility and grid hosting capacity for renewables through optimizing cross sector integration and grid scale storage as well as cover off-grid situations. They will improve the preparedness of the electricity system to support the EU's binding target for 2030 of minimum of 42.5% renewables in the gross final energy consumption (with the aspiration to reach 45%), and full decarbonisation by 2050. They will enable further electrification of demand and will enhance the competitiveness of the European value chain , reduce pressure on resources (also by making technologies ‘circular by design’) and decrease dependencies. Such solutions would also enable a better EU resilience to climate risks. The solutions will improve consumer awareness and engagement in the energy transition, via innovative offers and services (e.g. demand response, energy communities) and will target different types of consumers, including “hard to reach” population groups (such as energy poor or low-income households). This will result in increased trust in, and uptake of the new products and services entering the energy system. Carbon capture, use and storage (CCUS) and carbon dioxide removal (CDR) Accelerated deployment of carbon capture, use and storage (CCUS) as a CO2 emission mitigation option in electricity generation and/or in industry applications, as well as carbon dioxide removal for negative emissions. 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. [1] For an example of a methodology for the assessment of sustainability, circularity and contribution to EU resilience and technological autonomy of clean energy technology in the R&I pipeline, please see Study on circular approaches for a sustainable and affordable clean energy transition
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
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
To ensure a balanced portfolio, grants will be awarded to proposals not only in order of ranking but at least also to two proposals that are the highest ranked within the area of agriPV and at least also to two proposals that are the highest ranked within the area of offshore/nearshore PV, provided that proposals attain all 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.
Eligible costs will take the form of a lump sum as defined in the Decision of 7 July 2021 authorising the use of lump sum contributions under the Horizon Europe Programme – the Framework Programme for Research and Innovation (2021-2027) – and in actions under the Research and Training Programme of the European Atomic Energy Community (2021-2025) [[This decision is available on the Funding and Tenders Portal, in the reference documents section for Horizon Europe, under ‘Simplified costs decisions’ or through this link: https://ec.europa.eu/info/funding-tenders/opportunities/docs/2021-2027/horizon/guidance/ls-decision_he_en.pdf]].
described in Annex G of the Work Programme General Annexes.
Specific conditions
described in the [specific topic of the Work Programme]
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
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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