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Holistic Testing and Characterization of Commercial 18650 Lithium-Ion Cells

Reduced-order electrothermal models play a key role in the design and control of lithium-ion cell stacks, calling for accurate model parameter calibration. This paper presents a complete electrical and thermal experimental characterization procedure for the coupled modeling of cylindrical lithium-ion cells in order to implement them in a prototype Formula SAE hybrid racing car. The main goal of the tests is to determine how the cell capacity varies with the temperature and the discharge current to predict the open-circuit voltage of the cell and its entropic component. A simple approach for the characterization of the battery equivalent electrical circuit and a two-step thermal characterization method are also shown. The investigations are carried out on four commercial 18650 NMC lithium cells. The model was shown to predict the battery voltage with an RMS error lower than 20 mV and the temperature with an RMS error equal to 0.5 °C. The authors hope that this manuscript can contribute to the development of standardized characterization techniques for such cells while offering experimental data and validated models that can be used by researchers and BMS designers in different applications.
- University of Padua Italy
TK1001-1841, 18650 cell, cell equivalent circuit model, galvanostatic intermittent titration technique, TP250-261, cell parameter identification, Production of electric energy or power. Powerplants. Central stations, Industrial electrochemistry, Li-ion cell, cylindrical cell
TK1001-1841, 18650 cell, cell equivalent circuit model, galvanostatic intermittent titration technique, TP250-261, cell parameter identification, Production of electric energy or power. Powerplants. Central stations, Industrial electrochemistry, Li-ion cell, cylindrical cell
citations This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).3 popularity This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.Average influence This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).Average impulse This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.Average
