Identification and machine learning prediction of knee-point and knee-onset in capacity degradation curves of lithium-ion cells

Author:

Fermín-Cueto Paula,McTurk Euan,Allerhand Michael,Medina-Lopez Encarni,Anjos Miguel F.,Sylvester Joel,dos Reis GonçaloORCID

Funder

Portuguese Foundation for Science and Technology

Publisher

Elsevier BV

Reference34 articles.

1. Temperature dependent ageing mechanisms in lithium-ion batteries – a post-mortem study;Waldmann;J Power Sources,2014

2. Durability and reliability of EV batteries under electric utility grid operations: path dependence of battery degradation;Dubarry;J Electrochem Soc,2018

3. The effect of charging rate on the graphite electrode of commercial lithium-ion cells: a post-mortem study;Somerville;J Power Sources,2016

4. Lithium-ion battery aging mechanisms and life model under different charging stresses;Gao;J Power Sources,2017

5. IEEE Recommended practice for sizing lead-Acid batteries for stationary applications. IEEE Std 485–2010 (Revision of IEEE Std 485–1997)2011;:1–90.

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