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Fast Charge of Li-ion Batteries using a Two-Layer Distributed MPC with Electro-Chemical and Thermal Constraints., , , , и . ECC, стр. 1796-1803. IEEE, (2019)State-Of-Health Estimation Pipeline for Li-ion Battery Packs with Heterogeneous Cells., , , , , , и . ACC, стр. 1080-1086. IEEE, (2022)Pack Level State-of-Power Prediction for Heterogeneous Cells*., , , , , , и . ACC, стр. 1066-1073. IEEE, (2022)Robust observer design for discrete-time locally one-sided Lipschitz systems., , , и . Eur. J. Control, (2020)Computationally-efficient constrained control of the state-of-charge of a Li-ion battery cell., , , , и . CDC, стр. 1433-1439. IEEE, (2017)Discretisation-free battery fast-charging optimisation using the measure-moment approach., , , , и . ECC, стр. 628-634. IEEE, (2022)On Electrochemical Model-Based State Estimation for Lithium-Sulfur Batteries., , , , , , и . IEEE Trans. Control. Syst. Technol., 32 (3): 849-861 (мая 2024)Resolving Kirchhoff's Laws for Parallel Li-Ion Battery Pack State-Estimators., , и . IEEE Trans. Control. Syst. Technol., 30 (5): 2220-2227 (2022)Faster and Healthier Charging of Lithium-Ion Batteries via Constrained Feedback Control., , , , , , и . IEEE Trans. Control. Syst. Technol., 30 (5): 1990-2001 (2022)Interval Observer for SOC Estimation in Parallel-Connected Lithium-ion Batteries., , , , , и . ACC, стр. 1149-1154. IEEE, (2020)