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Lumped-Mass Model-Based State of Charge and Core Temperature Estimation for Cylindrical Li-Ion Batteries Considering Reversible Entropy Heat

  • Jiale Xie
  • , Xiaobing Chang
  • , Guang Wang
  • , Zhongbao Wei
  • , Zhekang Dong*
  • *此作品的通讯作者
  • North China Electric Power University
  • Beijing Institute of Technology
  • Hangzhou Dianzi University

科研成果: 期刊稿件文章同行评审

摘要

Reliable estimation of the state of charge (SoC) and core temperature (CoT) of battery cells is paramount for formulating efficient energy and thermal management strategies. Focusing on cylindrical Li-ion batteries, this article constructs an equivalent circuit model and a two-state thermal model; then these two different-physics lumped-mass models are close-looped using bridge variables encompassing temperature, heat, and SoC. Notably, in addition to the conventional irreversible thermogenesis of ohmic effect, the generally ignored reversible entropy heat is modeled and experimentally calibrated as well. Then, both the electrical and thermal model parameters are adaptively identified using the variable forgetting factor least square algorithm. Finally, a computationally efficient and nonlinearity-compatible algorithm, namely the singular value decomposition-based Kalman filter, is utilized for the joint estimation of SoC and CoT. Experimental validations under dynamic load excitations demonstrate the robustness and accuracy of the designed scheme, achieving favorable performance with errors as low as 5% for SoC and 0.2 °C for CoT.

源语言英语
页(从-至)4844-4853
页数10
期刊IEEE Transactions on Industrial Electronics
72
5
DOI
出版状态已出版 - 2025
已对外发布

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