Litcius/Paper detail

Scale-Up of Physics-Based Models for Predicting Degradation of Large Lithium Ion Batteries

Hong-Keun Kim, Kyu-Jin Lee

2020Sustainability10 citationsDOIOpen Access PDF

Abstract

Large lithium-ion batteries (LIBs) demonstrate different performance and lifetime compared to small LIB cells, owing to the size effects generated by the electrical configuration and property imbalance. However, the calculation time for performing life predictions with three-dimensional (3D) cell models is undesirably long. In this paper, a lumped cell model with equivalent resistances (LER cell model) is proposed as a reduced order model of the 3D cell model, which enables accurate and fast life predictions of large LIBs. The developed LER cell model is validated via the comparisons with results of the 3D cell models by simulating a 20-Ah commercial pouch cell (NCM/graphite) and the experimental values. In addition, the LER cell models are applied to different cell types and sizes, such as a 20-Ah cylindrical cell and a 60-Ah pouch cell.

Topics & Concepts

Lithium (medication)Biological systemDegradation (telecommunications)IonScale (ratio)Materials scienceCellComputer sciencePhysicsChemistryElectronic engineeringEngineeringEndocrinologyBiochemistryMedicineBiologyQuantum mechanicsAdvanced Battery Technologies ResearchAdvancements in Battery MaterialsAdvanced Battery Materials and Technologies