TULABI, MILAD
TULABI, MILAD
DIPARTIMENTO DI INGEGNERIA CHIMICA, MATERIALI, AMBIENTE
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Combining Thermal–Electrochemical Modeling and Deep Learning: A Physics-Constrained GRU for State-of-Health Estimation of Li-Ion Cells
2025 Tulabi, Milad; Bubbico, Roberto
Electrochemical–thermal modeling of Lithium-ion batteries: an analysis of thermal runaway with observation on aging effects
2025 Tulabi, Milad; Bubbico, Roberto
Failure mechanisms and risk assessment methodologies for lithium-ion batteries: A comprehensive review
2026 Paradiso, Silvia; Tulabi, Milad; Bubbico, Roberto
Impact of Battery Degradation on Thermal Runaway Risks in Lithium-Ion Batteries: a Statistical and Modelling Approach
2025 Tulabi, M.; Bubbico, R.
Towards Safe Fast Charging of Lithium–Ion Batteries via a Simulation-Trained Digital Twin Framework
2026 Tulabi, Milad; Bubbico, Roberto
| Titolo | Data di pubblicazione | Autore(i) | File |
|---|---|---|---|
| Combining Thermal–Electrochemical Modeling and Deep Learning: A Physics-Constrained GRU for State-of-Health Estimation of Li-Ion Cells | 2025 | Tulabi, Milad; Bubbico, Roberto | |
| Electrochemical–thermal modeling of Lithium-ion batteries: an analysis of thermal runaway with observation on aging effects | 2025 | Tulabi, Milad; Bubbico, Roberto | |
| Failure mechanisms and risk assessment methodologies for lithium-ion batteries: A comprehensive review | 2026 | Paradiso, Silvia; Tulabi, Milad; Bubbico, Roberto | |
| Impact of Battery Degradation on Thermal Runaway Risks in Lithium-Ion Batteries: a Statistical and Modelling Approach | 2025 | Tulabi, M.; Bubbico, R. | |
| Towards Safe Fast Charging of Lithium–Ion Batteries via a Simulation-Trained Digital Twin Framework | 2026 | Tulabi, Milad; Bubbico, Roberto |