English

Lithium-ion battery thermal-electrochemical model-based state estimation using orthogonal collocation and a modified extended Kalman filter

Systems and Control 2015-08-04 v1

Abstract

This paper investigates the state estimation of a high-fidelity spatially resolved thermal- electrochemical lithium-ion battery model commonly referred to as the pseudo two-dimensional model. The partial-differential algebraic equations (PDAEs) constituting the model are spatially discretised using Chebyshev orthogonal collocation enabling fast and accurate simulations up to high C-rates. This implementation of the pseudo-2D model is then used in combination with an extended Kalman filter algorithm for differential-algebraic equations to estimate the states of the model. The state estimation algorithm is able to rapidly recover the model states from current, voltage and temperature measurements. Results show that the error on the state estimate falls below 1 % in less than 200 s despite a 30 % error on battery initial state-of-charge and additive measurement noise with 10 mV and 0.5 K standard deviations.

Keywords

Cite

@article{arxiv.1506.08689,
  title  = {Lithium-ion battery thermal-electrochemical model-based state estimation using orthogonal collocation and a modified extended Kalman filter},
  author = {A. M. Bizeray and S. Zhao and S. R. Duncan and D. A. Howey},
  journal= {arXiv preprint arXiv:1506.08689},
  year   = {2015}
}

Comments

Submitted to the Journal of Power Sources

R2 v1 2026-06-22T10:02:15.451Z