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Aging model development based on multidisciplinary parameters for lithium-ion batteries
Authors:Akhil Garg  Su Shaosen  Liang Gao  Xiongbin Peng  Prashant Baredar
Affiliation:1. State Key Lab of Digital Manufacturing Equipment & Technology, School of Mechanical Science and Engineering, Huazhong University of Science and Technology, Wuhan, China;2. Intelligent Manufacturing Key Laboratory of Ministry of Education, Shantou University, Shantou, China;3. Energy Centre, Maulana Azad National Institute of Technology, Bhopal, India
Abstract:In this paper, a method composed of state of health (SOH) testing experiments and artificial intelligence simulation is proposed to carry out the study on the change of battery characteristic during its operation and generate mathematical models for the prediction of aging behaviour of battery. An experiment comprising of multidisciplinary parameters-based SOH detection is conducted to study the battery aging characteristics from several aspects (ie, electrochemistry, electric, thermal behaviour and mechanics). In total, 200 sets of data (corresponding 200 charging/discharging cycles) are collected from the experiment. The data obtained from the first 150 cycles are employed in generation of the models. The result of sensitivity analysis based on the obtained genetic programming models shows that it is better to apply voltage value at the end of charging step, charging time and cycle number to predict the operational performance of the battery. The average predicted accuracy of model (without stress) is 94.52%, whereas the average predicted accuracy of model (with stress effect) is 99.42%. The proposed models could be useful for defining the optimised charging strategy, fault diagnosis and spent batteries disposal strategies.
Keywords:battery aging model  battery management system  diffusion coefficient  energy conversion  genetic programming
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