EconPapers    
Economics at your fingertips  
 

A novel battery active equalization-based internal short circuit fault diagnosis method for lithium-ion batteries

Zhaohuan Liu, Jun Xu, Zixiang Zhao, Zhongyue Zou and Xuesong Mei

Energy, 2025, vol. 333, issue C

Abstract: The thermal runaway caused by internal short circuit (ISC) faults is the main safety issue of lithium-ion batteries. The diagnosis of ISC faults is the key but suffering problems including high complexity, inaccurate results, and even failure during battery balancing. To address these issues, an ISC fault diagnosis method based on active battery balancing is proposed, which only requires the balanced energy information. Diagnosis and quantification of ISC faults can be realized with extremely low computational complexity. An equalization topology structure based on flyback transformation is adopted, and an online internal resistance compensation method combining driving mode and charging mode is developed. Through the proposed method, the ISC resistance is quantitatively analyzed. Finally, a series of test results validate the effectiveness of the proposed method. The experimental results show that the diagnosis of ISC faults can be completed in the shortest time of 4801 s, and the ISC resistance estimation error is mostly within 2 %.

Keywords: Lithium-ion batteries; Active battery balancing; ISC fault diagnosis; Balanced energy information (search for similar items in EconPapers)
Date: 2025
References: Add references at CitEc
Citations:

Downloads: (external link)
http://www.sciencedirect.com/science/article/pii/S0360544225030634
Full text for ScienceDirect subscribers only

Related works:
This item may be available elsewhere in EconPapers: Search for items with the same title.

Export reference: BibTeX RIS (EndNote, ProCite, RefMan) HTML/Text

Persistent link: https://EconPapers.repec.org/RePEc:eee:energy:v:333:y:2025:i:c:s0360544225030634

DOI: 10.1016/j.energy.2025.137421

Access Statistics for this article

Energy is currently edited by Henrik Lund and Mark J. Kaiser

More articles in Energy from Elsevier
Bibliographic data for series maintained by Catherine Liu ().

 
Page updated 2025-07-29
Handle: RePEc:eee:energy:v:333:y:2025:i:c:s0360544225030634