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Modeling, Control and Implementation of a Lithium-ion Battery Charger in Electric Vehicle Application

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Warianty tytułu
PL
Modelowanie i zastosowanie układu ładowania baterii litowych stosowanych w pojazdach elektrycznych
Języki publikacji
EN
Abstrakty
EN
The rapid development of Electric Vehicle powered by lithium-ion battery has resulted in significant interesting to charging device. However, the nonlinear characteristics of lithium-ion battery increase the complexity of charger designing. In this paper, to overcome the disadvantages, battery model is established and its parameters are evaluated adopted an exponential fitting method. Then an appropriate control strategy is proposed based on small signal model to realize the proposed charging strategy. Finally, experimental results from a laboratory prototype are shown to verify the feasibility of the proposed strategies.
PL
W pracy przedstawiono układ ładowania baterii litowych stosowanych w pojazdach elektrycznych. Problemem jest nieliniowa charakterystyka baterii dlatego układ musi mieć odpowiedni system sterowania zapewniający właściwą strategię ładowania.
Rocznik
Strony
255--258
Opis fizyczny
Bibliogr. 13 poz., rys., tab., wykr.
Twórcy
autor
autor
autor
autor
  • Luoyu Road, Huazhong University of Science and Technology, P.R.China,430074, gzhhust@gmail.com
Bibliografia
  • [1] Mehdi Etezadi-Amoli, Mehdi Etezadi-Amoli, JasonStefani, Rapid-Charge Electric Vehicle Stations. IEEE Trans.Ind.Electron., 25(2010), No.2, 1883-1887
  • [2] Liang-Rui Chen, Chuan-Sheng Liu, Jin-Jia Chen, Improving Phase-Locked Battery Charger Speed by Using Resistance- Compensated Technique.IEEE Trans.Ind.Electron., 56(2009),No. 4,1205-1211
  • [3] Kristien Clement-Nyns, Edwin Haesen, Johan Driesen, The Impact of Charging Plug-In Hybrid Electric Vehicles on a Residential Distribution Grid. IEEE Trans. Power sys.,25(2010), No.1, 371-380
  • [4] Morcos,M.M.,Dillman,N.G.,Mersman,C.R., Battery Chargers for Electric Vehicles, IEEE Power Engineering Review, 20(2002),No.11,8-11
  • [5] McGrath, B.P., Holmes, D.G., McGoldrick, P.J., McIver, A.D., Design of a Soft-Switched 6-kW Battery, IEEE Trans.Power Electron.,22(2007),No.4,1136-1144
  • [6] Ying-Chun Chuang , Yu-Lung Ke, A Novel High-Efficiency Battery Charger With a Buck Zero-Voltage-Switching resonant Converter,IEEETrans.Energy Convers.,22(2007),No.4,848-854
  • [7] Ying-Chun Chuang, Yu-Lung Ke, Hung-Shiang Chuang, Hung- Kun Chen, Implementation and Analysis of an Improved Series- Loaded Resonant DC–DC Converter Operating Above Resonance for Battery Chargers. IEEE Trans.Ind.Electron., 45(2009),No.3,1052-1059
  • [8] V. Joseph, Thottuvelil, Modeling and Analysis of Power Converter with Batteries Load, 19th International Telecommunications Energy Conference, 1997,517 – 522
  • [9] Tseng, S.-Y., Shih, T.-C., Fan, S.-Y., Chang, G.-K., Design and Implementation of Lithium-ion/Lithium-Polymer Battery Charger with Impedance Compensation, International Conference on Power Electronics and Drive Systems, 2009,866 - 870
  • [10] M.B. Camara, B. Dakyo, H.Gualous, Cristian Nichita, DC/DC converters control for Embedded Energy management - Supercapacitors and Battery, 36th Annual Conference on IEEE Industrial Electronics Society, 2010, 2323-2328
  • [11] Minxin Zheng, Bojin Qi, Xiaowei Du, Dynamic Model for Characteristics of Li-ion Battery on Electric Vehicle, IEEE Conference on Industrial Electronics and Applications, 2009, 2867 – 2871
  • [12] Gwan-Bon Koo, Gun-Woo Moon, Myung-Joong Y, New Zero- Voltage-Switching Phase-Shift Full-Bridge Converter With Low Conduction Losses, IEEE Trans. Ind.Electron., 52(2005),No.1, 228-235.
  • [13] Vlatko V.,Juan A.S.,Raymond B.R., et al. Small-Signal Analysis of the Phase-Shifted PWM Converter, IEEE Trans.Power Electron.,7(1992),No.1,128-135.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPOB-0049-0057
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