
Horizon Europe is the European Union (EU) funding programme for the period 2021 – 2027, which targets the sectors of research and innovation. The programme’s budget is around € 95.5 billion, of which € 5.4 billion is from NextGenerationEU to stimulate recovery and strengthen the EU’s resilience in the future, and € 4.5 billion is additional aid.
Projects under this topic are expected to substantially advance the state of the art in the field of battery management, by developing innovative physics and data-based approaches, both at the software and hardware levels to ensure an optimised and safe utilisation of the battery system during all modes of operation.
Several of the following items should be addressed:the development and implementation of physics-based battery models (e.g., ageing phenomena models); adaptable battery models (e.g., based on operation data); sensor-based solutions at the battery system level (e.g., with respect to sensor integration, communication with the battery management, data fusion, data analysis); advanced state estimators (e.g., state of health, state of function, state of energy, state of power, state of safety); methods for the prognosis of remaining useful lifetime and ageing; methods for the early detection or prediction of failures; solutions for the management of special situations (e.g., unbalanced or dysfunctional cells).
EU contribution per project: €5,00 million
(Publish Date: 08/02/2022-for internal use only)
European Commission, Directorate-General for Research and Innovation
https://ec ropa /info/departments/research-and-innovation_en#contact
For clarifications or additional information regarding specific programmes/calls, you may contact the relevant contact points whose details are provided for each specific call through the Portal.Για διευκρινίσεις ή πρόσθετες πληροφορίες σχετικά με συγκεκριμένα προγράμματα / προσκλήσεις, μπορείτε να επικοινωνήσετε με τα σχετικά σημεία επαφής των οποίων τα στοιχεία παρέχονται για κάθε συγκεκριμένη προσκλήση μέσω της Πύλης.
In order to succeed in the development of a thriving innovative battery industry, pan-European cooperation on research and innovation is essential. It is essential to work across geographical boarders and institutional levels but it is also crucial that stakeholders from all parts of the battery value chain pull together in a strategic coordinated manner to ensure our collective research efforts are efficiently translated into sustainable technologies and products economically, environmentally and socially.Τhere is a need to continuously consolidate the Battery R&I community across the EU and associated countriesand across Battery-related networks, projects and initiatives.
Proposals are expected to:
EU contribution per project: € 3,00 million
(Publish Date: 22/07/2021-for internal use only)
https://ec ropa /info/research-and-innovation_en
The University of Cyprus announced plans a few years ago to build a solar PV farm in the United Nations buffer zone in the capital city of Nicosia. The project is finally coming to fruition, but with two additional elements: battery storage and testing for a blockchain system.
The University of Cyprus (UCY) announced in 2013 that it was going to build a 10 MWp photovoltaic park inside the United Nations buffer zone in the capital city of Nicosia. pv magazine has presented the project in detail.
After about six years, the developers appear to have gathered all the necessary licenses to start building. The updated plans come with two major changes, though, reflecting how much the energy sector has changed in the last few years. The first stage of the project will include 5 MWp of PV capacity with 2.35 MWh of battery storage, with plans to conduct testing for a blockchain program.
Cyprus'' energy regulator confirmed to pv magazine that the UCY project in the buffer zone is going to be the country''s first battery storage system. Venizelos Efthymiou, chairman of the research center for sustainable energy at the UCY, added that the university expects to publish the details of the project''s EPC tender in May. Efthymiou said the university is now working together with the distribution system operator, the Electricity Authority of Cyprus (EAC), on the tender specifications.
The project has received European funds. Specifically, "the initial capital is part of a long-term loan from the European Investment Bank that was issued to the University of Cyprus for the current construction phase," explained Efthymiou.
The goal is to use the project to cover the university''s electricity needs. For this reason, it will benefit from the so-called net-billing scheme, which the Cypriot government introduced last year. The net-billing scheme covers PV systems ranging in size from 10 KWp to 10 MWp and includes systems installed in commercial, industrial and public buildings.
When PV system owners have generated more electricity than the amount of electricity consumed in a given time period, they will receive payment credits from the EAC, based on a variable tariff called an "avoidance cost,” which is the amount of money the EAC saves by not paying fossil-fuel power plants to generate the power that will be produced by the PV system.
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