SOLUTION SHOWCASE
Flexible and scalable digital-twin platform for enhanced production efficiency and yield in battery cell production lines – BATTwin
martes 08, 11:30h - 11:45h
| Discovery Stage
Open Access
2026-09-08 11:30
2026-09-08 11:45
Europe/Madrid
Flexible and scalable digital-twin platform for enhanced production efficiency and yield in battery cell production lines – BATTwin
BATTwin aims to develop a novel multilevel digital twin platform towards Zero-Defect Manufacturing in battery production, that will reduce defect rates in battery production lines. The solution integrates four pillars, namely:
(i) a multi-sensor data acquisition and management layer, supported by data semantics through a Digital Battery Passport data model,
(ii) process-level digital twins, modelling the critical stages of electrode manufacturing, cell assembly and conditioning through multi-physics, data-driven and hybrid approaches,
(iii) system-level digital twins, based on simulation and analytical modelling,
(iv) user-centric, goal-driven digital twin workflows, increasing the explainability of digital twins and driving the user in system design and control.
The approach is tested in Verkor’s and Sunlight’s facilities, two industrial pilots producing different battery chemistries and geometries, validating the flexibility and scalability of the approach towards Zero Defect European Gigafactories.
The BATTwin project is coordinated by Prof. Marcello Colledani, Department of Mechanical Engineering, Politecnico di Milano, and has received funding from the European Climate, Infrastructure and Environment Executive Agency under grant agreement No. 101137954.
Discovery Stage
BATTwin aims to develop a novel multilevel digital twin platform towards Zero-Defect Manufacturing in battery production, that will reduce defect rates in battery production lines. The solution integrates four pillars, namely:
(i) a multi-sensor data acquisition and management layer, supported by data semantics through a Digital Battery Passport data model,
(ii) process-level digital twins, modelling the critical stages of electrode manufacturing, cell assembly and conditioning through multi-physics, data-driven and hybrid approaches,
(iii) system-level digital twins, based on simulation and analytical modelling,
(iv) user-centric, goal-driven digital twin workflows, increasing the explainability of digital twins and driving the user in system design and control.
The approach is tested in Verkor’s and Sunlight’s facilities, two industrial pilots producing different battery chemistries and geometries, validating the flexibility and scalability of the approach towards Zero Defect European Gigafactories.
The BATTwin project is coordinated by Prof. Marcello Colledani, Department of Mechanical Engineering, Politecnico di Milano, and has received funding from the European Climate, Infrastructure and Environment Executive Agency under grant agreement No. 101137954.