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Cite Details

P. Wang, L. Yang, H. Wang, D. M. Tartakovsky and S. Onori, "Temperature estimation from current and voltage measurements in lithium-ion battery systems", J. Power Storage, vol. 34, doi:10.1016/j.est.2020.102133, pp. 102133, 2021

Abstract

Performance and safety of lithium-ion batteries depend on the ability to efficiently estimate their temperature during charge/discharge operations. We propose a novel algorithm to infer temperature in cylindrical lithium-ion battery cells from measurements of current and terminal voltage. Our approach employs a dual ensemble Kalman filter, which incorporates the enhanced single-particle dynamics to relate terminal voltage to battery temperature and Li-ion concentration. The numerical results and experimental validation from LGChem LiNiMnCoO2 battery (INR21700 M50) cell data demonstrate the method’s ability to estimate temperature at various charge/discharge C-rates.

BibTeX Entry

@article{wang-2021-temperature,
author = {P. Wang and L. Yang and H. Wang and D. M. Tartakovsky and S. Onori},
title = {Temperature estimation from current and voltage measurements in lithium-ion battery systems},
year = {2021},
urlpdf = {http://maeresearch.ucsd.edu/Tartakovsky/Papers/wang-2021-temperature.pdf},
journal = {J. Power Storage},
volume = {34},
doi = {10.1016/j.est.2020.102133},
pages = {102133}
}