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A Health-Aware AC Heating Strategy With Lithium Plating Criterion for Batteries at Low Temperatures., , , , , , и . IEEE Trans. Ind. Informatics, 20 (2): 2295-2306 (февраля 2024)Modeling of Organic Rankine Cycle for waste heat recovery using RBF neural networks., , , и . SSCI, стр. 1-8. IEEE, (2016)Optimal Battery Charging Strategy Based on Complex System Optimization., , , , и . LSMS/ICSEE (3), том 763 из Communications in Computer and Information Science, стр. 371-378. Springer, (2017)Charging Pattern Optimization for Lithium-Ion Batteries With an Electrothermal-Aging Model., , , и . IEEE Trans. Ind. Informatics, 14 (12): 5463-5474 (2018)A Transferred Recurrent Neural Network for Battery Calendar Health Prognostics of Energy-Transportation Systems., , , , , и . IEEE Trans. Ind. Informatics, 18 (11): 8172-8181 (2022)Co-Estimation of State-of-Charge and State-of- Health for Lithium-Ion Batteries Using an Enhanced Electrochemical Model., , , , и . IEEE Trans. Ind. Electron., 69 (3): 2684-2696 (2022)Optimal Charging Control for Lithium-Ion Battery Packs: A Distributed Average Tracking Approach., , , , и . IEEE Trans. Ind. Informatics, 16 (5): 3430-3438 (2020)Lithium-Ion Battery Calendar Health Prognostics Based on Knowledge-Data-Driven Attention., , , и . IEEE Trans. Ind. Electron., 70 (1): 407-417 (2023)Coestimation of SOC and Three-Dimensional SOT for Lithium-Ion Batteries Based on Distributed Spatial-Temporal Online Correction., , , , , , , и . IEEE Trans. Ind. Electron., 70 (6): 5937-5948 (июня 2023)A Physical-Data Fusion Framework for Lithium-ion Battery SOC Estimation., , , и . IECON, стр. 1-6. IEEE, (2023)