DocumentCode :
65190
Title :
Broadband Identification of Battery Electrical Impedance for HEVs
Author :
Al Nazer, R. ; Cattin, V. ; Granjon, P. ; Montaru, M. ; Ranieri, M.
Author_Institution :
Electron. & Inf. Technol. Lab., Atomic Energy & Alternative Energies Comm., Grenoble, France
Volume :
62
Issue :
7
fYear :
2013
fDate :
Sept. 2013
Firstpage :
2896
Lastpage :
2905
Abstract :
Electrical impedance measurements provide useful information about the characteristics of a Li-ion battery. The classical method of measurement consists of performing electrochemical impedance spectroscopy (EIS) that relies on offline records of the response of the battery to a controlled current or voltage test signal. Although robust, it is considered as an expensive, complex, and very time-consuming method, particularly when used for an embedded system where a new whole measurement set should be carried once the impedance is to be tracked. To overcome these problems and to address embedded applications, we propose applying broadband excitation signals to perform such impedance measurements. Spectral coherence is an advanced parameter estimated to define the frequency bands where the transfer function of a system is accurately identified. The calculation of this parameter can also assess the normalized random errors on both the magnitude and the phase of the identified impedance since they are related by an explicit mathematical expression. After a brief review of some signal processing tools for identification with broadband excitation signals, we apply this method to identify the impedance of a Li-ion battery and to compare performances of various identification patterns on noisy simulated and experimental data.
Keywords :
battery powered vehicles; electrochemical impedance spectroscopy; hybrid electric vehicles; lithium; parameter estimation; secondary cells; signal processing; transfer functions; EIS; HEV; Li; advanced parameter estimation; battery electrical impedance; broadband excitation signal identification; controlled current test signal; electrical impedance measurements; electrochemical impedance spectroscopy; embedded system; explicit mathematical expression; lithium-ion battery characteristics; normalized random error assessement; signal processing tools; spectral coherence; transfer function; voltage test signal; Batteries; Battery charge measurement; Broadband communication; Frequency measurement; Impedance; Impedance measurement; Mathematical model; Battery impedance; Li-ion battery; broadband signals; confidence limits; identification; spectral coherence; spectroscopy;
fLanguage :
English
Journal_Title :
Vehicular Technology, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9545
Type :
jour
DOI :
10.1109/TVT.2013.2254140
Filename :
6516985
Link To Document :
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