Innovative microgrids for improved energy system integration and efficiency in urban contexts
Demonstrates low-voltage DC microgrids in buildings and districts to integrate local renewables, storage and demand response in cities.
Description
Expected outcome
Projects are expected to contribute to all the following outcomes: Improved awareness of the potential of Low Voltage Direct Current (LVDC) microgrids to support the goals of the European Green Deal and the Clean Industrial Deal, including as defined under the SET Plan and the Solar Strategy . Increased acceptance of LVDC microgrids in Europe, with significant and measurable contributions to human and building safety (notably with respect to DC faults), energy and resource efficiency, integration of renewables & storage and demand response, peak power shaving, resilience, and (where applicable) established proof of concept on how LVDC microgrids can enable energy communities to share energy assets and increase self-consumption of local renewables sources. Increased uptake in European cities, facilitated by technical guidelines for installation of LVDC microgrids and recommendations on regulatory alignment to European, national, regional and local authorities, as well as power distribution operators. Increased number of regulatory options and standards supporting EU industry leadership in the supply of LVDC solutions, in line with the Competitiveness Compass guidelines for fostering innovation and growth.
Scope
Most electric appliances in buildings are based on Direct Current (DC): PV panels, stationary and e-vehicle batteries, LED lighting, IT equipment, heat pumps and other appliances. Their connection to a LVDC microgrid inside the building would significantly improve energy and materials efficiency (replacing AC/DC converters by simpler DC/DC converters) and optimise local electrical and/or thermal energy storage and self-consumption of local renewables, contribute to (AC) grids stability through demand response and ancillary services (incl. reactive power support), and increase resilience by enabling islanded operation. The required power capacity of the connection of the LVDC microgrid to the AC (Alternating Current) distribution grid via a central AC/DC converter would be significantly lower than a traditional AC installation, thereby reducing pressure on city grid. The LVDC microgrid could also be implemented at small neighbourhood level (e.g. a street), possibly in parallel to an existing AC grid, enabling more efficient and easier sharing of common energy assets and self-consumption in an energy community. In order to reach this goal, proposals are expected to address all of the following aspects: Develop innovative, safe and sustainable LVDC microgrids design methods and tools, ensuring notably grid monitoring, control and safe handling of DC faults at affordable cost; develop methodologies and assess the life-cycle costs/benefits of LVDC microgrids (compared to traditional AC installations), for the application itself and the overall energy system (including the impacts on the AC distribution grid, for example, due to the injection of harmonics, or contribution to grid stability through ancillary services and demand response over the current and next day), from technical, environmental, economic and social aspects (notably on vulnerable consumers energy bill). Demonstrate in real life an LVDC microgrid, connecting all electrical applications in at least one residential, office or commercial building, or in one neighbourhood. The proposal must already include a review of the local regulatory framework(s) and grid codes and a demonstration that the real-life implementation(s) of the LVDC microgrid will be possible in the local context(s) (possibly through pre-agreed regulatory relaxation or ‘innovation sandbox’). Beyond the real demonstration(s), the installation of LVDC microgrid must be demonstrated virtually in other types of buildings, including at least one building under renovation, in the environment of different cities and countries, including at least one vulnerable urban area if possible, by numerical simulation using digital twins , with the objective of assessing the regulatory feasibility and life-cycle costs/benefits (detailed in the first bullet) in these different environments. The total number of real and virtual demonstrations must be at least 3.
What this means for cities and regions
Cities, municipal energy companies, housing providers and distribution operators piloting DC microgrids in public buildings, districts or energy communities. Topic budget €20 million; 3 grants expected; around €7 million per project. Opens 9 February 2027; closes 7 October 2027. Rooftop solar potential from satellite imagery and Copernicus climate data support site selection, PV yield forecasting and measuring the emissions effect of each pilot.
Key facts
Submission deadline
7 October 2027, 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).
Classification
Thematic domains
Activity types
Space relevance
Tier B — space tools are implicitly needed to deliver the call's outcomes.
Space services
Sources
HORIZON-MISS-2027-04-CIT-01
Ingested September 20th, 2026
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