Centralized control of parallel connected power conditioning system in electric vehicle charge–discharge and storage integration station
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  • 作者:Jiuqing CAI ; Changsong CHEN ; Peng LIU…
  • 关键词:Centralized control ; Power conditioning system (PCS) ; Charge–discharge and storage integration station ; Vehicle to grid (V2G) ; Seamless transfer
  • 刊名:Journal of Modern Power Systems and Clean Energy
  • 出版年:2015
  • 出版时间:June 2015
  • 年:2015
  • 卷:3
  • 期:2
  • 页码:269-276
  • 全文大小:2,183 KB
  • 参考文献:[1]Luo ZW, Song YH, Hu ZC et al (2011) Forecasting charging load of plug-in electric vehicles in China. In: Proceedings of the 2011 IEEE power and energy society general meeting, San Diego, CA, USA, 24-9 Jul 2011, 8 pp
    [2]Madawala UK, Thrimawithana DJ (2011) A bidirectional inductive power interface for electric vehicles in V2G systems. IEEE Trans Ind Electron 58(10):4789-796View Article
    [3]Khayyam H, Ranjbarzadeh H, Marano V (2012) Intelligent control of vehicle to grid power. J Power Sources 201:1-View Article
    [4]Chen CS, Duan SX, Cai T et al (2011) Optimal allocation and economic analysis of energy storage system in microgrids. IEEE Trans Power Electron 26(10):2762-773View Article
    [5]Ortega-Vazquez MA, Bouffard F, Silva V (2012) Electric vehicle aggregator/system operator coordination for charging scheduling and services procurement. IEEE Trans Power Syst 28(2):1806-815View Article
    [6]Zheng Y, Dong ZY, Xu Y et al (2014) Electric vehicle battery charging/swap stations in distribution systems: comparison study and optimal planning. IEEE Trans Power Syst 29(1):221-29View Article
    [7]Boulanger AG, Chu AC, Maxx S et al (2011) Vehicle electrification: status and issues. Proc IEEE 99(6):1116-138View Article
    [8]Gouveia C, Leal Moreira C, Pe?as Lopes JA et al (2013) Microgrid service restoration: the role of plugged-in electric vehicles. IEEE Ind Electron Mag 7(4):26-1View Article
    [9]Lopez MA, Martin S, Aguado JA et al. (2011) Optimal microgrid operation with electric vehicles. In: Proceedings of the 2nd IEEE PES international conference and exhibition on innovative smart grid technologies (ISGT Europe-1), Manchester, UK, 5- Dec 2011, 8 pp
    [10]Chen CS, Duan SX (2014) Optimal integration of plug-in hybrid electric vehicles in microgrids. IEEE Trans Ind Inform 10(3):1917-926View Article
    [11]Lee YJ, Emadi A (2014) Integrated bi-directional AC/DC and DC/DC converter for plug-in hybrid electric vehicle conversion. In: Proceedings of the 2007 IEEE vehicle power and propulsion conference (VPPC-7), Arlington, TX, USA, 9-2 Sept 2007, pp 215-22
    [12]Onar O, Kobayashi J, Khaligh A (2011) A multi-level grid interactive bi-directional AC/DC-DC/AC converter and a hybrid battery/ultra-capacitor energy storage system with integrated magnetics for plug-in hybrid electric vehicles. In: Proceedings of the 26th IEEE annual applied power electronics conference and exposition (APEC-1), Fort Worth, TX, USA, 6-1 Mar 2011, pp 829-35
    [13]Zhou XH, Lukic S, Bhattacharya S et al (2009) Design and control of grid-connected converter in bi-directional battery charger for plug-in hybrid electric vehicle application. In: Proceedings of the 2009 IEEE vehicle power and propulsion conference (VPPC-9), Dearborn, MI, USA, 7-0 Sept 2009, pp 1716-721
    [14]Tan KT, Peng XY, So PL et al (2012) Centralized control for parallel operation of distributed generation inverters in microgrids. IEEE Trans Smart Grid 3(4):1977-987View Article
    [15]Guerrero JM, Hang LJ, Uceda J (2008) Control of distributed uninterruptible power supply systems. IEEE Trans Ind Electron 55(8):2845-859View Article
    [16]Liu BY, Duan SX, Cai T (2011) Photovoltaic DC-building-module-based BIPV system: concept and design considerations. IEEE Trans Power Electron 26(5):1418-429View Article
    [17]Tran TV, Chun TW, Lee HH et al (2014) PLL-based seamless transfer control between grid-connected and islanding modes in grid-connected inverters. IEEE Trans Power Electron 29(10):5218-228View Article
    [18]Guo ZQ, Sha DS, Liao XZ (2014) Voltage magnitude and frequency control of three-phase voltage source inverter for seamless transfer. IET Power Electron 7(1):200-08View Article
    [19]Liu Z, Liu JJ (2014) Indirect current control based seamless transfer of three-phase inverter in distributed generation. IEEE Trans Power Electron 29(7):3368-383View Article
    [20]Ochs DS, Mirafzal B, Sotoodeh P (2014) A method of seamless transitions between grid-tied and stand-alone modes of operation for utility-interactive three-phase inverters. IEEE Trans Ind Appl 50(3):1934-941View Article
    [21]Azani H, Massoud A, Benbrahim L et al (2014) An LCL filter-based grid-interfaced three-phase voltage source inverter: performance evaluation and stability analysis. In: Proceedings of the 7th IET international conference on power electronics, machines and drives (PEMD-4), Manchester, UK, 8-0 Apr 2014, 6 pp
    [22]Hu XF, Wei Z, Chen YH et al (2012) A control strategy for grid-connected inverters with LCL filters. Proc CSEE 32(27):142-48 (in Chinese)
  • 作者单位:Jiuqing CAI (1)
    Changsong CHEN (1)
    Peng LIU (1)
    Shanxu DUAN (1)

    1. State Key Laboratory of Advanced Electromagnetic Engineering and Technology, School of Electrical and Electronic Engineering, Huazhong University of Science and Technology, Wuhan, China
  • 刊物主题:Energy Systems; Renewable and Green Energy; Power Electronics, Electrical Machines and Networks;
  • 出版者:Springer Berlin Heidelberg
  • ISSN:2196-5420
文摘
This study presents a centralized control scheme that coordinates parallel operations of power conditioning system (PCS) for the grid interactions of electric vehicles (EVs) in EV charge–discharge and storage integration station. Key issues for the control and operation of PCS under various operation modes are discussed, including vehicle to grid (V2G) mode, stand-alone mode and seamless transfer mode. The intelligent multi-mode charge–discharge method is utilized for the V2G mode, and the parallel control method based on communication network is adopted for the stand-alone mode. In addition, a novel seamless transfer strategy is proposed, which is able to implement PCS transition between V2G mode and stand-alone mode. The detailed process of the seamless transfer between the two modes is illustrated. Experimental results are presented to show the performance and feasibility of this strategy.

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