Evaluation and Comparative Study of Cell Balancing Methods for Lithium-Ion Batteries Used in Electric Vehicles

Vehicle manufacturers positioned electric vehicles (EVs) and hybrid electric vehicles (HEVs) as reliable, safe and environmental friendly alternative to traditional fuel based vehicles. Charging EVs using renewable energy resources reduce greenhouse emissions. The Lithium-ion (Li-ion) batteries used...

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Main Authors: Thiruvonasundari Duraisamy, Kaliyaperumal Deepa
Format: Article
Language:English
Published: Diponegoro University 2021-08-01
Series:International Journal of Renewable Energy Development
Subjects:
Online Access:https://ejournal.undip.ac.id/index.php/ijred/article/view/34484
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spelling doaj-3521c3f232b440c1b87d0078d5d70bec2021-04-06T01:52:00ZengDiponegoro UniversityInternational Journal of Renewable Energy Development2252-49402021-08-0110347147910.14710/ijred.2021.3448418011Evaluation and Comparative Study of Cell Balancing Methods for Lithium-Ion Batteries Used in Electric VehiclesThiruvonasundari Duraisamy0Kaliyaperumal Deepa1Department of Electrical and Electronics Engineering, Amrita School of Engineering, Bengaluru, Amrita Vishwa VidyapeethamDepartment of Electrical and Electronics Engineering, Amrita School of Engineering, Bengaluru, Amrita Vishwa VidyapeethamVehicle manufacturers positioned electric vehicles (EVs) and hybrid electric vehicles (HEVs) as reliable, safe and environmental friendly alternative to traditional fuel based vehicles. Charging EVs using renewable energy resources reduce greenhouse emissions. The Lithium-ion (Li-ion) batteries used in EVs are susceptible to failure due to voltage imbalance when connected to form a pack. Hence, it requires a proper balancing system categorised into passive and active systems based on the working principle. It is the prerogative of a battery management system (BMS) designer to choose an appropriate system depending on the application. This study compares and evaluates passive balancing system against widely used inductor based active balancing system in order to select an appropriate balancing scheme addressing battery efficiency and balancing speed for E-vehicle segment (E-bike, E-car and E-truck). The balancing systems are implemented using “top-balancing” algorithm which balance the cells voltages near the end of charge for better accuracy and effective balancing. The most important characteristics of the balancing systems such as degree of imbalance, power loss and temperature variation are determined by their influence on battery performance and cost. To enhance the battery life, Matlab-Simscape simulation-based analysis is performed in order to fine tune the cell balancing system for the optimal usage of the battery pack. For the simulation requirements, the battery model parameters are obtained using least-square fitting algorithm on the data obtained through electro chemical impedance spectroscopy (EIS) test. The achieved balancing time of the passive and active cell balancer for fourteen cells were 48 and 20 min for the voltage deviation of 30 mV. Also, the recorded balancing time was 215 and 42 min for the voltage deviation of 200 mV.https://ejournal.undip.ac.id/index.php/ijred/article/view/34484electric vehiclelithium-ion batteryenergy efficiencytemperature behaviour and cost analysis
collection DOAJ
language English
format Article
sources DOAJ
author Thiruvonasundari Duraisamy
Kaliyaperumal Deepa
spellingShingle Thiruvonasundari Duraisamy
Kaliyaperumal Deepa
Evaluation and Comparative Study of Cell Balancing Methods for Lithium-Ion Batteries Used in Electric Vehicles
International Journal of Renewable Energy Development
electric vehicle
lithium-ion battery
energy efficiency
temperature behaviour and cost analysis
author_facet Thiruvonasundari Duraisamy
Kaliyaperumal Deepa
author_sort Thiruvonasundari Duraisamy
title Evaluation and Comparative Study of Cell Balancing Methods for Lithium-Ion Batteries Used in Electric Vehicles
title_short Evaluation and Comparative Study of Cell Balancing Methods for Lithium-Ion Batteries Used in Electric Vehicles
title_full Evaluation and Comparative Study of Cell Balancing Methods for Lithium-Ion Batteries Used in Electric Vehicles
title_fullStr Evaluation and Comparative Study of Cell Balancing Methods for Lithium-Ion Batteries Used in Electric Vehicles
title_full_unstemmed Evaluation and Comparative Study of Cell Balancing Methods for Lithium-Ion Batteries Used in Electric Vehicles
title_sort evaluation and comparative study of cell balancing methods for lithium-ion batteries used in electric vehicles
publisher Diponegoro University
series International Journal of Renewable Energy Development
issn 2252-4940
publishDate 2021-08-01
description Vehicle manufacturers positioned electric vehicles (EVs) and hybrid electric vehicles (HEVs) as reliable, safe and environmental friendly alternative to traditional fuel based vehicles. Charging EVs using renewable energy resources reduce greenhouse emissions. The Lithium-ion (Li-ion) batteries used in EVs are susceptible to failure due to voltage imbalance when connected to form a pack. Hence, it requires a proper balancing system categorised into passive and active systems based on the working principle. It is the prerogative of a battery management system (BMS) designer to choose an appropriate system depending on the application. This study compares and evaluates passive balancing system against widely used inductor based active balancing system in order to select an appropriate balancing scheme addressing battery efficiency and balancing speed for E-vehicle segment (E-bike, E-car and E-truck). The balancing systems are implemented using “top-balancing” algorithm which balance the cells voltages near the end of charge for better accuracy and effective balancing. The most important characteristics of the balancing systems such as degree of imbalance, power loss and temperature variation are determined by their influence on battery performance and cost. To enhance the battery life, Matlab-Simscape simulation-based analysis is performed in order to fine tune the cell balancing system for the optimal usage of the battery pack. For the simulation requirements, the battery model parameters are obtained using least-square fitting algorithm on the data obtained through electro chemical impedance spectroscopy (EIS) test. The achieved balancing time of the passive and active cell balancer for fourteen cells were 48 and 20 min for the voltage deviation of 30 mV. Also, the recorded balancing time was 215 and 42 min for the voltage deviation of 200 mV.
topic electric vehicle
lithium-ion battery
energy efficiency
temperature behaviour and cost analysis
url https://ejournal.undip.ac.id/index.php/ijred/article/view/34484
work_keys_str_mv AT thiruvonasundariduraisamy evaluationandcomparativestudyofcellbalancingmethodsforlithiumionbatteriesusedinelectricvehicles
AT kaliyaperumaldeepa evaluationandcomparativestudyofcellbalancingmethodsforlithiumionbatteriesusedinelectricvehicles
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