TY - JOUR
T1 - Battery Degradation in Electric and Hybrid Electric Vehicles
T2 - A Survey Study
AU - Timilsina, Laxman
AU - Badr, Payam R.
AU - Hoang, Phuong H.
AU - Ozkan, Gokhan
AU - Papari, Behnaz
AU - Edrington, Christopher S.
N1 - Publisher Copyright:
© 2013 IEEE.
PY - 2023
Y1 - 2023
N2 - The lithium-ion batteries used in electric vehicles have a shorter lifespan than other vehicle components, and the degradation mechanism inside these batteries reduces their life even more. Battery degradation is considered a significant issue in battery research and can increase the vehicle's reliability and economic concerns. This study highlights the degradation mechanisms in lithium-ion batteries. The aging mechanism inside a battery cannot be eliminated but can be minimized depending on the vehicle's operating conditions. Different operating conditions affect the aging mechanism differently. Knowing the factors and how they impact battery capacity is crucial for minimizing degradation. This paper explains the detailed degradation mechanism inside the battery first. Then, the major factors responsible for the degradation and their effects on the battery during the operation of electric vehicles are discussed. Also, the different techniques used to model the degradation of a battery and predict its remaining life are explained in-depth, along with the techniques to abate the aging process. Finally, this study focuses on the research gaps, difficulties in predicting the lifetime, and reducing the degradation mechanism of a battery used in electric vehicles.
AB - The lithium-ion batteries used in electric vehicles have a shorter lifespan than other vehicle components, and the degradation mechanism inside these batteries reduces their life even more. Battery degradation is considered a significant issue in battery research and can increase the vehicle's reliability and economic concerns. This study highlights the degradation mechanisms in lithium-ion batteries. The aging mechanism inside a battery cannot be eliminated but can be minimized depending on the vehicle's operating conditions. Different operating conditions affect the aging mechanism differently. Knowing the factors and how they impact battery capacity is crucial for minimizing degradation. This paper explains the detailed degradation mechanism inside the battery first. Then, the major factors responsible for the degradation and their effects on the battery during the operation of electric vehicles are discussed. Also, the different techniques used to model the degradation of a battery and predict its remaining life are explained in-depth, along with the techniques to abate the aging process. Finally, this study focuses on the research gaps, difficulties in predicting the lifetime, and reducing the degradation mechanism of a battery used in electric vehicles.
KW - Battery degradation
KW - battery life prediction
KW - charging and discharging rates
KW - degradation abatement
KW - electric vehicle
KW - hybrid electric vehicle
KW - lithium-ion battery
KW - remaining useful life
UR - https://www.scopus.com/pages/publications/85159698064
U2 - 10.1109/ACCESS.2023.3271287
DO - 10.1109/ACCESS.2023.3271287
M3 - Review article
AN - SCOPUS:85159698064
SN - 2169-3536
VL - 11
SP - 42431
EP - 42462
JO - IEEE Access
JF - IEEE Access
ER -