CAN Communication Based Modular Type Battery Management System for Electric Vehicles

Lithium ion batteries are widely used in portable electronic devices and electric vehicles. Although battery technology has been significantly improved, it does not fully meet the energy requirements of electric vehicles. Electric vehicle batteries are built by serial and parallel connections of man...

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Main Authors: Mustafa Turgut, Raif Bayir, Fecir Duran
Format: Article
Language:English
Published: Kaunas University of Technology 2018-06-01
Series:Elektronika ir Elektrotechnika
Subjects:
Online Access:http://eejournal.ktu.lt/index.php/elt/article/view/20975
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spelling doaj-2665e875a07641588832f56dc12ba62e2020-11-25T02:12:12ZengKaunas University of TechnologyElektronika ir Elektrotechnika1392-12152029-57312018-06-01243536010.5755/j01.eie.24.3.2097520975CAN Communication Based Modular Type Battery Management System for Electric VehiclesMustafa TurgutRaif BayirFecir DuranLithium ion batteries are widely used in portable electronic devices and electric vehicles. Although battery technology has been significantly improved, it does not fully meet the energy requirements of electric vehicles. Electric vehicle batteries are built by serial and parallel connections of many cells to provide sufficient power. Differences between cells during battery usage can shorten the battery life and even worse can cause fire and explosion. Therefore, there is a need for a battery management system to ensure that the voltage, temperature and current information of the battery cells are used as optimum conditions. Cell balancing should be used to ensure that the battery cells are charging simultaneously. Cell voltage and temperature are measured by connecting auxiliary slave board to each series battery pack. This information is controlled by a master board. In this application, the excess energy is converted to heat by the load resistor on the utility boards. Fuzzy logic control is used to control the load resistor with the switching element. The charge status of the battery was estimated using the main battery current and the mains voltage with the master board. This application has been tested on an electric vehicle. A low cost modular battery management system has been developed that can control the safe charging and discharging of the vehicle battery. DOI: http://dx.doi.org/10.5755/j01.eie.24.3.20975http://eejournal.ktu.lt/index.php/elt/article/view/20975battery management systemfuzzy logic controlstate of chargeelectric vehicles.
collection DOAJ
language English
format Article
sources DOAJ
author Mustafa Turgut
Raif Bayir
Fecir Duran
spellingShingle Mustafa Turgut
Raif Bayir
Fecir Duran
CAN Communication Based Modular Type Battery Management System for Electric Vehicles
Elektronika ir Elektrotechnika
battery management system
fuzzy logic control
state of charge
electric vehicles.
author_facet Mustafa Turgut
Raif Bayir
Fecir Duran
author_sort Mustafa Turgut
title CAN Communication Based Modular Type Battery Management System for Electric Vehicles
title_short CAN Communication Based Modular Type Battery Management System for Electric Vehicles
title_full CAN Communication Based Modular Type Battery Management System for Electric Vehicles
title_fullStr CAN Communication Based Modular Type Battery Management System for Electric Vehicles
title_full_unstemmed CAN Communication Based Modular Type Battery Management System for Electric Vehicles
title_sort can communication based modular type battery management system for electric vehicles
publisher Kaunas University of Technology
series Elektronika ir Elektrotechnika
issn 1392-1215
2029-5731
publishDate 2018-06-01
description Lithium ion batteries are widely used in portable electronic devices and electric vehicles. Although battery technology has been significantly improved, it does not fully meet the energy requirements of electric vehicles. Electric vehicle batteries are built by serial and parallel connections of many cells to provide sufficient power. Differences between cells during battery usage can shorten the battery life and even worse can cause fire and explosion. Therefore, there is a need for a battery management system to ensure that the voltage, temperature and current information of the battery cells are used as optimum conditions. Cell balancing should be used to ensure that the battery cells are charging simultaneously. Cell voltage and temperature are measured by connecting auxiliary slave board to each series battery pack. This information is controlled by a master board. In this application, the excess energy is converted to heat by the load resistor on the utility boards. Fuzzy logic control is used to control the load resistor with the switching element. The charge status of the battery was estimated using the main battery current and the mains voltage with the master board. This application has been tested on an electric vehicle. A low cost modular battery management system has been developed that can control the safe charging and discharging of the vehicle battery. DOI: http://dx.doi.org/10.5755/j01.eie.24.3.20975
topic battery management system
fuzzy logic control
state of charge
electric vehicles.
url http://eejournal.ktu.lt/index.php/elt/article/view/20975
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AT raifbayir cancommunicationbasedmodulartypebatterymanagementsystemforelectricvehicles
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