Perturbation-Based Battery Impedance Characterization Methods: From the Laboratory to Practical Implementation
To guarantee the secure and effective long-term functionality of lithium-ion batteries, vital functions, including lifespan estimation, condition assessment, and fault identification within battery management systems, are necessary. Battery impedance is a crucial indicator for assessing battery heal...
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Veröffentlicht in: | Batteries (Basel) 2024-12, Vol.10 (12), p.414 |
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description | To guarantee the secure and effective long-term functionality of lithium-ion batteries, vital functions, including lifespan estimation, condition assessment, and fault identification within battery management systems, are necessary. Battery impedance is a crucial indicator for assessing battery health and longevity, serving as an important reference in battery state evaluation. This study offers a comprehensive review of the characterization and applications of impedance spectroscopy. It highlights the increasing attention paid to broadband perturbation signals for impedance measurements, which promotes impedance characterization methods from laboratory to practical implementation. The impact of varying impedance characteristics on distinct cell states and their utilization is further examined. The discussion encompasses the challenges and opportunities for future research on onboard battery management system characterizations. |
doi_str_mv | 10.3390/batteries10120414 |
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subjects | Batteries battery modeling Broadband Design and construction electrochemical impedance spectroscopy Electrodes Electrolytes Energy industry Energy storage Fault diagnosis Impedance (Electricity) Laboratories Lithium Lithium cells Lithium-ion batteries lithium-ion battery multi-sine signal Perturbation perturbation signal Power management Reliability (Engineering) Temperature |
title | Perturbation-Based Battery Impedance Characterization Methods: From the Laboratory to Practical Implementation |
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