Remaining useful life prognostics of lithium-ion batteries based on a coordinate reconfiguration of degradation trajectory and multiple linear regression

Chen, Zhiwei and Li, Lianfeng and Cui, Weiwei and Yang, Song and Wang, Yao and Wang, Dexin (2023) Remaining useful life prognostics of lithium-ion batteries based on a coordinate reconfiguration of degradation trajectory and multiple linear regression. Frontiers in Energy Research, 10. ISSN 2296-598X

[thumbnail of pubmed-zip/versions/2/package-entries/fenrg-10-1033039-r1/fenrg-10-1033039.pdf] Text
pubmed-zip/versions/2/package-entries/fenrg-10-1033039-r1/fenrg-10-1033039.pdf - Published Version

Download (1MB)

Abstract

Lithium battery has been widely applied as new energy to cope with pressures in both form environment and energy. The remaining useful life (RUL) prognostics of lithium-ion batteries have become more critical. Convenient battery life prediction allows early detection of performance deficiencies to help maintain the battery system promptly. This paper proposes a RUL prognostics model of lithium-ion batteries based on a coordinate reconfiguration of degradation trajectory and multiple linear regression. First, a new sampling rule is used to reconfigure the coordinates of degradation data of new batteries and truncated similar batteries. Then, the relationship between similar and new lithium-ion batteries is established by using the reconfiguration data. Moreover, a new RUL prognostics model based on a coordinate reconfiguration of degradation trajectory and multiple linear regression is established by considering the influence of time-varying factors, which can improve prediction accuracy with small sample data and significantly reduce product development time and cost.

Item Type: Article
Subjects: Universal Eprints > Energy
Depositing User: Managing Editor
Date Deposited: 03 May 2023 04:26
Last Modified: 20 Jan 2024 10:10
URI: http://journal.article2publish.com/id/eprint/1830

Actions (login required)

View Item
View Item