A frequency-domain approach to dynamical modeling of electrochemical power sources

被引:85
|
作者
Karden, E [1 ]
Buller, S [1 ]
De Doncker, RW [1 ]
机构
[1] Rhein Westfal TH Aachen, ISEA, Inst Power Elect & Elect Drives, D-52066 Aachen, Germany
关键词
electrochemical impedance spectroscopy; battery; supercapacitor; porous electrodes; equivalent circuit model;
D O I
10.1016/S0013-4686(02)00091-9
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Electrochemical impedance spectroscopy can be used to obtain simulation models for the non-linear. non-stationary dynamic behavior of electrochemical power sources. Some extensions of porous-electrode theory are necessary for this purpose, which are not provided by standard EIS data evaluation software. This paper presents experimental data and consistent equivalent-circuit models for different dc conditions. regarding three electrochemical systems: supercapacitors as almost ideally blocking porous electrodes, lead/acid batteries under overcharge (water electrolysis) operation. and the same battery type under discharge/charge operation. The series inductance which masks the electrochemical behavior for frequencies as low as 100 Hz for a 100 Ah cell can be attributed mainly to the macroscopic cell geometry. The dependence of impedance parameters on direct current (non-linearity), temperature, state-of-charge. and previous discharge/charge regime is investigated. It is shown that model parameters extracted from the impedance spectra are closely linked with the charge-transfer kinetics, double-layer capacitance. transport limitation. and porous structure of the electrodes. Consequences for impedance-based determination of the battery's state-of-charge or state-of-health are discussed. (C) 2002 Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:2347 / 2356
页数:10
相关论文
共 50 条
  • [1] RIVER QUALITY MODELING - FREQUENCY-DOMAIN APPROACH
    MORKOC, F
    BIGGAR, JW
    SHUMWAY, RH
    NIELSEN, DR
    JOURNAL OF IRRIGATION AND DRAINAGE ENGINEERING, 1989, 115 (06) : 1008 - 1017
  • [2] Frequency-domain sensitivities with application to power system modeling
    Ju, Ping
    Guo, Lei
    Gao, Changpei
    Chen, Qian
    Ning, Yan
    Sun, Bin
    Zhao, Ze
    Zhongguo Dianji Gongcheng Xuebao/Proceedings of the Chinese Society of Electrical Engineering, 2010, 30 (28): : 19 - 24
  • [3] Frequency-Domain Thermal Modeling and Characterization of Power Semiconductor Devices
    Ma, Ke
    He, Ning
    Liserre, Marco
    Blaabjerg, Frede
    IEEE TRANSACTIONS ON POWER ELECTRONICS, 2016, 31 (10) : 7183 - 7193
  • [4] Frequency-Domain Modeling of Nonlinear Power System Devices: the Quasi-Sinusoidal Volterra Approach
    Laurano, Christian
    Toscani, Sergio
    Zanoni, Michele
    2019 IEEE MILAN POWERTECH, 2019,
  • [5] SEISMIC MODELING - A FREQUENCY-DOMAIN FINITE-ELEMENT APPROACH
    MARFURT, KJ
    GEOPHYSICS, 1985, 50 (02) : 340 - 340
  • [6] Modeling of Switching Transients for Frequency-Domain EMC Analysis of Power Converters
    Marlier, C.
    Videt, A.
    Idir, N.
    Moussa, H.
    Meuret, R.
    2012 15TH INTERNATIONAL POWER ELECTRONICS AND MOTION CONTROL CONFERENCE (EPE/PEMC), 2012,
  • [7] FREQUENCY-DOMAIN LOCALIZATION OF INTRACEREBRAL DIPOLAR SOURCES
    LUTKENHONER, B
    ELECTROENCEPHALOGRAPHY AND CLINICAL NEUROPHYSIOLOGY, 1992, 82 (02): : 112 - 118
  • [8] A New Approach to Modeling Multiport Systems from Frequency-Domain Data
    Lefteriu, Sanda
    Antoulas, Athanasios C.
    IEEE TRANSACTIONS ON COMPUTER-AIDED DESIGN OF INTEGRATED CIRCUITS AND SYSTEMS, 2010, 29 (01) : 14 - 27
  • [9] A FREQUENCY-DOMAIN APPROACH TO WATER-QUALITY MODELING IN GROUNDWATER - THEORY
    DUFFY, CJ
    GELHAR, LW
    WATER RESOURCES RESEARCH, 1985, 21 (08) : 1175 - 1184
  • [10] CORRELATION OF POWER VARIABLES FREQUENCY-DOMAIN
    KOSS, LL
    JOURNAL OF SOUND AND VIBRATION, 1988, 125 (03) : 511 - 522