Associate professor
Supervisor of Master's Candidates
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Impact Factor:8.857
DOI number:10.1016/j.energy.2022.123829
Journal:Energy
Key Words:Lithium-ion batteries State-of-health Differential thermal capacity Simulated annealing Support vector regression
Abstract:Accurate state of health (SOH) estimation is a key issue for lithium-ion batteries management and control. In this paper, a novel SOH estimation method is proposed based on the fusion of the simulated annealing algorithm and support vector regression (SVR). Firstly, considering the electrochemical and thermodynamic characteristics of the battery aging process, we extract the health factors by analyzing and sampling the differential thermal capacity (DTC) curves which are based on temperature, voltage, and current. Then, an SVR model is constructed to estimate the SOH. The mean-variance obtained from cross-validation is used as the evaluation function, and hyperparameters of the SVR are optimized using the simulated annealing algorithm. Finally, we conduct two sets of experiments on the Oxford dataset for verification. Experimental results not only show the outperformance of the DTC curves for describing the battery aging but also illustrate that our proposed prediction model exhibits higher accuracy and less error of SOH estimation under the premise of ensuring real-time performance than the other two comparative models.
Indexed by:Journal paper
Discipline:Engineering
Document Type:J
Volume:250
Page Number:123829
Translation or Not:no
Date of Publication:2022-07-01
Included Journals:SCI、EI
Links to published journals:https://www.sciencedirect.com/science/article/pii/S0360544222007320