As project coordinator, BRING is at the core of HAVEN, leading both the scientific and managerial backbone of the initiative. By driving the development of advanced models, optimization tools, and diagnostic strategies, BRING ensures that hybrid energy storage systems (HESS) are designed, tested, and deployed with efficiency, safety, and scalability in mind.

What’s the main role of BRING in HAVEN?

BRING coordinates the entire HAVEN project while also leading the technical work on models and tools for design, management, and diagnosis. This means defining the techno‑economic KPIs for hybrid energy storage, developing adaptive optimization strategies for different use cases, and creating electro‑thermal and physics‑based models of battery systems.

Beyond modeling, BRING designs the methodologies to size hybrid systems, supplies advanced battery cells for high‑energy modules, and develops the control strategies that link batteries with energy management systems. By combining project coordination with deep technical expertise, BRING ensures that HAVEN’s innovations are not only scientifically sound but also ready for real‑world integration.

What are the main challenges BRING may face in the project?

For BRING, the main challenge is also its greatest opportunity: turning advanced models and algorithms into practical tools that work seamlessly in real‑world conditions. Hybrid energy storage systems are complex, with different battery chemistries, configurations, and use cases, so creating solutions that are both flexible and reliable requires cutting‑edge innovation.

Another challenge lies in ensuring that these solutions are future‑proof. This means not only validating them in demonstrators, but also making sure they are scalable, interoperable, and aligned with market and sustainability trends. By combining technical expertise with a forward‑looking vision, BRING is helping HAVEN deliver hybrid storage systems that are safe, efficient, and ready to support the energy transition.

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