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April 27, 2026IEEE Transactions on Cybernetics1 citations

Internal Temperature Estimation of Pouch-Type Lithium-Ion Battery by a 2-D Semilinear PDE Model With Space-Dependent Diffusivity

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FGFudong GeYCYangQuan ChenZZZhiqiang Zuo

Key Points

  • This study aims to develop a method for estimating the internal temperature of lithium-ion batteries using a PDE model with space-dependent diffusivity.
  • Implemented a 2-D semilinear PDE model to estimate temperature in pouch-type lithium-ion batteries.
  • Designed a Luenberger-type observer based on limited linear measurement data.
  • Established exponential stability of the estimation error system using Lyapunov methods and linear matrix inequalities.
  • Demonstrated the effectiveness of the proposed temperature estimation strategy through simulations.
  • Achieved input-to-state stability in uncertain observer error systems.

Abstract

This article aims to propose an internal temperature estimation strategy for pouch-type lithium-ion battery using a 2-D semilinear partial differential equation (PDE) model with space-dependent diffusivity and in-domain uncertainty. The distributed linear measurements are considered, where only limited linear information is measured. Initially, we divide the interested domain into several subdomains based on the number of sensors. A Luenberger-type PDE observer is then designed for battery internal temperature estimation by the uncertainty-free plant model, and the exponential stability of corresponding estimation error system is established via the Lyapunov functional method and linear matrix inequalities (LMIs). Moreover, when in-domain uncertainty is presented, a robust internal temperature estimation strategy is developed to ensure that the corresponding uncertain observer error systems are input-to-state stable (ISS). Simulation results are finally provided to verify the effectiveness of the proposed methods.

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Cite This Study

Ge et al. (2026) studied this question.

synapsesocial.com/papers/69eefcaefede9185760d3a2chttps://doi.org/10.1109/tcyb.2026.3683396
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