Study on adaptive cycle life extension method of li-ion battery based on differential thermal voltammetry parameter decoupling

Zhixuan Wu, Guorong Zhu, Qian Wang*, Shengjie Yang, Jing V. Wang, Jianqiang Kang

*Kontaktforfatter

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningpeer review

1 Citationer (Scopus)
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Abstract

Battery aging leads to reduction in a battery’s cycle life, which restricts the development of energy storage technology. At present, the state of health (SOH) assessment technology, which is used to indicate the battery cycle life, has been widely studied. This paper tries to find a way to adjust the battery management system adaptively in order to prolong the battery cycle life with the change of SOH. In this paper, an improved Galvanostatic Intermittent Titration Technique (GITT) method is proposed to decouple the terminal voltage into overpotential (induced by total internal resistance) and stoichiometric drift (caused by battery aging, indicated by OCV). Based on improved GITT, the open circuit voltage-temperature change (OCV-dT/dV) characteristics of SOH are described more accurately. With such an accurate description of SOH change, the adaptive method to change the discharge and charge cut-off voltage is obtained, whose application can prolong battery cycle life. Experiments verify that, in the middle of a battery’s life-cycle, the adaptive method to change the discharge and charge cut-off voltage can effectively improve the cycle life of the battery. This method can be applied during the period of preventive maintenance in battery storage systems.

OriginalsprogEngelsk
Artikelnummer6239
TidsskriftEnergies
Vol/bind14
Udgave nummer19
ISSN1996-1073
DOI
StatusUdgivet - 1 okt. 2021

Bibliografisk note

Funding Information:
Funding: This research was funded by project of National Natural Science Foundation of China (Grant No: 51777146, 51977163), and was supported by Science and Technology on Ship Integrated Power System Technology Laboratory (Grant No: 6142217190203).

Publisher Copyright:
© 2021 by the authors. Licensee MDPI, Basel, Switzerland.

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