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MULTICYCLE SOH PREDICTION FOR LITHIUM BATTERIES BASED ON CRQA-DRIVEN DYNAMIC FEATURES

  • Zhengzhou University

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

To address the insufficient modelling of cross-cycle dynamic correlations, this article introduces Cross-Recurrence Quantification Analysis (CRQA) as a feature extraction method for lithium-ion battery State of Health (SOH) assessment. By constructing cross-cycle cross-recurrence plots for multivariate charge-discharge signals (current, voltage, temperature), dynamic similarity statistical features are extracted to model the State of Health variation between adjacent cycles, overcoming the reliance of traditional methods on single-cycle static features. Furthermore, Spearman's rho is used to calculate the correlation between cross-cycle features and the change in SOH of lithium-ion battery, which allows us to choose the appropriate offset parameter a. At last, predictive models are constructed using Random Forest, Support Vector Machine, and Back Propagation Neural Network based on the NASA battery aging datasets. Experimental results validate that this study proposes a new dynamic modeling framework for lithium-ion battery SOH assessment via revealing the nonlinear dynamic correlations inherent in charge-discharge signals.

Original languageEnglish
Title of host publication15th International Conference on Quality, Reliability, Risk, Maintenance, and Safety Engineering, QR2MSE 2025
PublisherInstitution of Engineering and Technology
Pages89-96
Number of pages8
Volume2025
Edition35
ISBN (Electronic)9781807050207, 9781807050344, 9781807050351, 9781807050375, 9781837242634, 9781837242900, 9781837242917, 9781837243143, 9781837243150, 9781837243167, 9781837243235, 9781837243341, 9781837243358, 9781837245277, 9781837246847, 9781837246854, 9781837247004, 9781837247011, 9781837247028, 9781837247035, 9781837247042, 9781837247059, 9781837247257, 9781837247264, 9781837247271, 9781837247295, 9781837247325, 9781837247332, 9781837249916
DOIs
StatePublished - 1 Dec 2025
Event15th International Conference on Quality, Reliability, Risk, Maintenance, and Safety Engineering, QR2MSE 2025 - Hohhot, China
Duration: 23 Jul 202526 Jul 2025

Conference

Conference15th International Conference on Quality, Reliability, Risk, Maintenance, and Safety Engineering, QR2MSE 2025
Country/TerritoryChina
CityHohhot
Period23/07/2526/07/25

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 7 - Affordable and Clean Energy
    SDG 7 Affordable and Clean Energy

Keywords

  • CROSS-RECURRENCE QUANTIFICATION ANALYSIS
  • LITHIUM-ION BATTERIES
  • STATE OF HEALTH

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