The transportation sector is responsible for roughly one-quarter of the total greenhouse emissions in the EU with road vehicles contributing to over 60% of the emissions. Besides transport, an equally large transition from fossil towards green energy is on-going as essential parts of the European Green Deal. Pollution from shipping causes more than 50 000 premature deaths in Europe annually. Electric vehicles change the value and supply chains of vehicle industries dramatically. Therefore, the EU has initiated a wide range of actions across the value chain to create an European industrial base for batteries as well as the relevant research and innovation ecosystems. Batteries are a key element in the work programme for cross-sectoral solutions for climate transition, enabling the rollout of zero-emission mobility and renewable energy.
The project BATMAX paves the way for advanced next generation data-based and adaptable battery management systems capable of fulfilling the needs of various mobile and stationary applications and use cases. Given the role of battery systems as a key enabling technology within the green shift in transport, mobility and energy, it is evident that multiple combinations of requirements, use cases, duties and businesses are placed upon battery systems.
The main objective of the project is to contribute to improving battery system performance, safety, reliability, service life, lifetime cost and therefore to maximise the value created by operation of the battery systems in various kinds of end use applications. BATMAX creates a framework for next generation of battery management based on large amounts of data, both experimental, operational and synthetic, adaptable physics-based models, suitable reduced-order models for both physical BMS algorithms and real-time multi-scale digital twins.