A Novel Battery State of Charge Estimation Method Based on a Super-Twisting Sliding Mode Observer
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Titre | A Novel Battery State of Charge Estimation Method Based on a Super-Twisting Sliding Mode Observer |
Type de publication | Journal Article |
Year of Publication | 2018 |
Auteurs | Huangfu Y, Xu J, Zhao D, Liu Y, Gao F |
Journal | ENERGIES |
Volume | 11 |
Pagination | 1211 |
Date Published | MAY |
Type of Article | Article |
Mots-clés | Li-Ion battery, second-order RC equivalent circuit model, Sliding mode observer, state of charge, super-twisting algorithm |
Résumé | A novel method for Li-ion battery state of charge (SOC) estimation based on a super-twisting sliding mode observer (STSMO) is proposed in this paper. To design the STSMO, the state equation of a second-order RC equivalent circuit model (SRCECM) is derived to represent the dynamic behaviors of the Li-ion battery, and the model parameters are determined by the pulse current discharge approach. The convergence of the STSMO is proven by Lyapunov stability theory. The experiments under three different discharge profiles are conducted on the Li-ion battery. Through comparisons with a conventional sliding mode observer (CSMO) and adaptive extended Kalman filter (AEKF), the superiority of the proposed observer for SOC estimation is validated. |
DOI | 10.3390/en11051211 |