DocumentCode
1363580
Title
Feasibility Analysis of a Novel Cell Equalizer Topology for Plug-In Hybrid Electric Vehicle Energy-Storage Systems
Author
Cassani, Pablo A. ; Williamson, Sheldon S.
Author_Institution
Innovox Inc., Montreal, QC, Canada
Volume
58
Issue
8
fYear
2009
Firstpage
3938
Lastpage
3946
Abstract
To meet the stringent cost targets for hybrid electric, plug-in hybrid electric (PHEV), and all-electric vehicles, serious improvement in battery cycle life and safety is undoubtedly essential. More recently, lithium batteries, in the form of lithium-ion, lithium-polymer, or lithium iron phosphate, have profoundly been explored. Despite critical research initiatives, lithium-based batteries have not yet been able to meet the steep energy demands, long lifetime, and low cost, which are unique to vehicular-propulsion applications. One of the most practical techniques of improving overall performance is to use suitable power electronics intensive cell-voltage equalizers in conjunction with onboard energy-storage devices. There have been some interesting developments in this area during the last few years, but cost constraints and high current specifications have prevented the complete deployment of this versatile technology. The purpose of this paper is to introduce a novel configuration for a cell-voltage equalizer, with the potential of fulfilling the expectations of low cost, high current capability, and high efficiency. A comprehensive comparison between the theoretical novel equalizer, a typical equalizer, and the experimental prototype of the novel equalizer will be presented, which will help analyze performance, complexity, and cost.
Keywords
costing; energy storage; equalisers; hybrid electric vehicles; cell equalizer topology; cost targets; energy-storage systems; feasibility analysis; high current capability; high efficiency; low cost; plug-in hybrid electric vehicle; Battery; cell equalizers; electric propulsion; energy storage; plug-in hybrid electric vehicles (PHEVs); power electronics; vehicle electronics; vehicle power systems;
fLanguage
English
Journal_Title
Vehicular Technology, IEEE Transactions on
Publisher
ieee
ISSN
0018-9545
Type
jour
DOI
10.1109/TVT.2009.2031553
Filename
5232835
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