Module design and fault diagnosis in electric vehicle batteries
File(s)
Author(s)
Offer, GJ
Yufit, V
Howey, DA
Wu, B
Brandon, NP
Type
Journal Article
Abstract
Systems integration issues, such as electrical and thermal design and management of full battery packs–often containing hundreds of cells–have been rarely explored in the academic literature. In this paper we discuss the design and construction of a 9 kWh battery pack for a motorsports application. The pack contained 504 lithium cells arranged into 2 sidepods, each containing 3 modules, with each module in a 12P7S configuration. This paper focuses particularly on testing the full battery pack and diagnosing subsequent problems related to cells being connected in parallel. We demonstrate how a full vehicle test can be used to identify malfunctioning strings of cells for further investigation. After individual cell testing it was concluded that a single high inter-cell contact resistance was causing currents to flow unevenly within the pack, leading to cells being unequally worked. This is supported by a Matlab/Simulink model of one battery module, including contact resistances. Over time the unequal current flowing through cells can lead to significant differences in cells’ state of charge and open circuit voltages, large currents flowing between cells even when the load is disconnected, cells discharging and aging more quickly than others, and jeopardise capacity and lifetime of the pack.
Date Issued
2012-04-01
Citation
Journal of Power Sources, 2012
ISSN
0378-7753
Publisher
Journal of Power Sources
Start Page
383
End Page
392
Journal / Book Title
Journal of Power Sources
Volume
206
Copyright Statement
© 2012 Elsevier B.V. All rights reserved. NOTICE: this is the author’s version of a work that was accepted for publication in Journal of Power Sources. Changes resulting from the publishing process, such as peer review, editing, corrections, structural formatting, and other quality control mechanisms may not be reflected in this document. Changes may have been made to this work since it was submitted for publication. A definitive version was subsequently published in Journal of Power Sources, [Vol. 206, (2012) DOI 10.1016/j.jpowsour.2012.01.087
Description
25/04/13 meb Accepted version, Ok to pub
Publication Status
Published