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June 3, 20260 citationsOpen Access

Numerical Simulation of Quantitative Ultrasound Spectroscopy for State-of-Health and State-of-Charge Assessment in Lithium-Ion Batteries

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JCJuan Pablo Gaviria Cardona

Key Points

  • The aim is to utilize numerical simulation to evaluate the state-of-health and state-of-charge in lithium-ion batteries through quantitative ultrasound spectroscopy.
  • Used one-dimensional results from Implicit Finite Difference Method (I-FDM) and Local Radial Basis Function (L-RBF) method.
  • Applied two-dimensional simulations with the SimSonic software.
  • Processed simulation outputs in MATLAB for visualization.
  • Numerical datasets provide insights into ultrasound spectroscopic assessment of battery states.
  • 1D and 2D simulation results are organized according to manuscript figures, demonstrating effective health and charge evaluation.
  • Findings showcase the applicability of numerical methods for enhanced understanding of lithium-ion battery performance.

Abstract

This repository contains the processed numerical datasets used to generatethe figures and quantitative ultrasound spectroscopy (QUS) results presentedin the manuscript: "Numerical Simulation of Quantitative Ultrasound Spectroscopy forState-of-Health and State-of-Charge Assessment in Lithium-Ion Batteries". The folders are organized according to the corresponding figures in the manuscript. The one-dimensional (1D) results were obtained using in-house numericalimplementations of the Implicit Finite Difference Method (I-FDM) andLocal Radial Basis Function (L-RBF) method. The two-dimensional (2D) simulation results were obtained using theopen-source software SimSonic. To visualize and process the 2D simulation outputs MATLABare required.

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Cite This Study

Juan Pablo Gaviria Cardona (2026) studied this question.

synapsesocial.com/papers/6a1fc696dee9eb8c0dce79e7https://doi.org/10.5281/zenodo.20361516
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