Analysis study on electric vehicle lithium ion polymer batteries COP in various temperature condition in a confined space – review of recent literature

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Main Authors: Heng, Rhenita G.L., Zuradzman, Mohamad Razlan, Dr., Shahriman, Abu Bakar, Dr., Ibrahim, Zunaidi, Hazry, Desa, Assoc. Prof. Dr., Wan Khairunizam, Wan Ahmad, Dr., Nazrul Hamizi, Adnan
Other Authors: rhenita.heng86@gmail.com
Format: Article
Language:English
Published: American-Eurasian Network for Scientific Information (AENSI) 2014
Subjects:
COP
Online Access:http://dspace.unimap.edu.my:80/dspace/handle/123456789/35404
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Institution: Universiti Malaysia Perlis
Language: English
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spelling my.unimap-354042017-11-29T05:01:08Z Analysis study on electric vehicle lithium ion polymer batteries COP in various temperature condition in a confined space – review of recent literature Heng, Rhenita G.L. Zuradzman, Mohamad Razlan, Dr. Shahriman, Abu Bakar, Dr. Ibrahim, Zunaidi Hazry, Desa, Assoc. Prof. Dr. Wan Khairunizam, Wan Ahmad, Dr. Nazrul Hamizi, Adnan rhenita.heng86@gmail.com zuradzman@unimap.edu.my. shahriman@unimap.edu.my zunaidi@tatiuc.edu.my hazry@unimap.edu.my khairunizam@unimap.edu.my nazrulhamizi.adnan@gmail.com Electric vehicle (EV) Lithium ion polymer battery COP Ambient temperature condition Link to publisher's homepage at http://www.aensiweb.com/ The lithium ion polymer batteries are quickly emerging as the preferred electrical energy storage technology and generally used in portable electronics products such as notebook computers, tablets, smart phones and so on. Besides, this technology also attracts worldwide attention in transportation application including the electric vehicles. Electric vehicles (EVs) are becoming more appealing options over combustion engine based vehicles, due to ever rising fuel prices and growing environmental concerns. Demand for electric vehicles (EVs) is increasing, and lithium ion polymer batteries with increased ranges will be critical to increase the marketability and important step in reducing greenhouse gas emissions. However, the current electric vehicles (EVs) are a temporary solution to create more zero emission when run on the road. In additional, the temperatures of lithium ion polymer batteries play an important role in determining the performance of an electric vehicle (EV). It also directly affects the vehicle dynamic performance, reliability, long term durability and safety. From the review, I found that the battery should operate within a temperature range to achieve desired performance and calendar life. All electrochemical batteries are strongly linked to their thermal state. The electrical characteristics are strongly dependent on temperature while the thermal state is a result of both their environmental temperature, but also the electrical usage due to internal heat generation. This is because higher or lower than normal temperature might affect the performance, charging and discharging rate, battery lifespan, battery capacity and maintenance requirements. In general, a battery in a cool location has a longer lifespan than in a warm location. Therefore a solution needs to be solved to maximizing the COP of the battery management. In this paper a brief review of related current literature on electric vehicles (EVs), lithium ion polymer batteries, and ambient temperature conditions are provided. This paper also concludes with direction for future research. 2014-06-12T02:14:26Z 2014-06-12T02:14:26Z 2014 Article Australian Journal of Basic and Applied Sciences, vol. 8(4) Special, 2014, pages 683-686 1991-8178 http://www.ajbasweb.com/old/2-ajbas_Special_2014.html http://dspace.unimap.edu.my:80/dspace/handle/123456789/35404 en American-Eurasian Network for Scientific Information (AENSI)
institution Universiti Malaysia Perlis
building UniMAP Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaysia Perlis
content_source UniMAP Library Digital Repository
url_provider http://dspace.unimap.edu.my/
language English
topic Electric vehicle (EV)
Lithium ion polymer battery
COP
Ambient temperature condition
spellingShingle Electric vehicle (EV)
Lithium ion polymer battery
COP
Ambient temperature condition
Heng, Rhenita G.L.
Zuradzman, Mohamad Razlan, Dr.
Shahriman, Abu Bakar, Dr.
Ibrahim, Zunaidi
Hazry, Desa, Assoc. Prof. Dr.
Wan Khairunizam, Wan Ahmad, Dr.
Nazrul Hamizi, Adnan
Analysis study on electric vehicle lithium ion polymer batteries COP in various temperature condition in a confined space – review of recent literature
description Link to publisher's homepage at http://www.aensiweb.com/
author2 rhenita.heng86@gmail.com
author_facet rhenita.heng86@gmail.com
Heng, Rhenita G.L.
Zuradzman, Mohamad Razlan, Dr.
Shahriman, Abu Bakar, Dr.
Ibrahim, Zunaidi
Hazry, Desa, Assoc. Prof. Dr.
Wan Khairunizam, Wan Ahmad, Dr.
Nazrul Hamizi, Adnan
format Article
author Heng, Rhenita G.L.
Zuradzman, Mohamad Razlan, Dr.
Shahriman, Abu Bakar, Dr.
Ibrahim, Zunaidi
Hazry, Desa, Assoc. Prof. Dr.
Wan Khairunizam, Wan Ahmad, Dr.
Nazrul Hamizi, Adnan
author_sort Heng, Rhenita G.L.
title Analysis study on electric vehicle lithium ion polymer batteries COP in various temperature condition in a confined space – review of recent literature
title_short Analysis study on electric vehicle lithium ion polymer batteries COP in various temperature condition in a confined space – review of recent literature
title_full Analysis study on electric vehicle lithium ion polymer batteries COP in various temperature condition in a confined space – review of recent literature
title_fullStr Analysis study on electric vehicle lithium ion polymer batteries COP in various temperature condition in a confined space – review of recent literature
title_full_unstemmed Analysis study on electric vehicle lithium ion polymer batteries COP in various temperature condition in a confined space – review of recent literature
title_sort analysis study on electric vehicle lithium ion polymer batteries cop in various temperature condition in a confined space – review of recent literature
publisher American-Eurasian Network for Scientific Information (AENSI)
publishDate 2014
url http://dspace.unimap.edu.my:80/dspace/handle/123456789/35404
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