A Direct Modularization Method for Multicell to Multicell Equalizer With Large Cell Count

被引:2
|
作者
Dam, Shimul K. [1 ]
John, Vinod [2 ]
机构
[1] Univ Tennessee, CURENT, Knoxville, TN 37996 USA
[2] Indian Inst Sci, Bangalore 560012, India
关键词
Fast balancing; modular; voltage equalizer; CHARGE EQUALIZER; BATTERY; ARCHITECTURE; DESIGN; SYSTEM; PACK;
D O I
10.1109/TIE.2024.3395799
中图分类号
TP [自动化技术、计算机技术];
学科分类号
0812 ;
摘要
A modular voltage equalizer can be used in a wide variety of applications without changing the module design. However, the modularization of an equalizer topology often involves slow intermodule equalization, additional energy loss, and cost. A study on available modularization techniques shows that transformer-based equalizers offer simple and low-cost modularization methods. Conversely, the transformer-less equalizers can offer a more compact design, but their modularization methods suffer from either high complexity and loss, or slow intermodule equalization speed. In this work, one twowinding transformer is introduced into a transformer-less equalizer module to leverage the modularization benefits of transformer isolation while still achieving a more compact design than transformer-based equalizers. The proposed direct modularization method achieves fast intermodule equalization and fixed design for a variety of applications with a small increase in cost and size. The proposed method is implemented on a transformer-less equalizer and its effectiveness is validated experimentally with a threemodule prototype.
引用
收藏
页码:15983 / 15993
页数:11
相关论文
共 50 条
  • [31] Multicell power allocation method based on game theory for inter-cell interference coordination
    ZHANG Hui1
    2Key Laboratory of Universal Wireless Communications
    3Chalmers University of Technology
    Science China(Information Sciences), 2009, (12) : 2378 - 2384
  • [32] Multicell power allocation method based on game theory for inter-cell interference coordination
    Hui Zhang
    XiaoDong Xu
    JingYa Li
    XiaoFeng Tao
    Ping Zhang
    Tommy Svensson
    Carmen Botella
    Science in China Series F: Information Sciences, 2009, 52 : 2378 - 2384
  • [33] An Analytical Framework for Multicell Cooperation via Stochastic Geometry and Large Deviations
    Huang, Kaibin
    Andrews, Jeffrey G.
    IEEE TRANSACTIONS ON INFORMATION THEORY, 2013, 59 (04) : 2501 - 2516
  • [34] MULTICELL COOPERATION: EVOLUTION OF COORDINATION AND COOPERATION IN LARGE-SCALE NETWORKS
    Burchardt, Harald
    Haas, Harald
    IEEE WIRELESS COMMUNICATIONS, 2013, 20 (01) : 19 - 26
  • [35] CELL AND ENVIRONMENT INTERACTIONS IN TUMOR MICROREGIONS - THE MULTICELL SPHEROID MODEL
    SUTHERLAND, RM
    SCIENCE, 1988, 240 (4849) : 177 - 184
  • [36] A Cell Detection Technique for Downlink Channel in Underwater Multicell Networks
    Asim, Muhammad
    Cho, Yong Soo
    2018 INTERNATIONAL CONFERENCE ON INFORMATION AND COMMUNICATION TECHNOLOGY CONVERGENCE (ICTC), 2018, : 1055 - 1057
  • [37] A novel design of reconfigurable multicell for large-scale battery packs
    Zhu, Yu
    Zhang, Wuyang
    Cheng, Jun
    Li, Yuan
    2018 INTERNATIONAL CONFERENCE ON POWER SYSTEM TECHNOLOGY (POWERCON), 2018, : 1445 - 1452
  • [38] CELL-MIGRATION IN MULTICELL SPHEROIDS - SWIMMING AGAINST THE TIDE
    MCELWAIN, DLS
    PETTET, GJ
    BULLETIN OF MATHEMATICAL BIOLOGY, 1993, 55 (03) : 655 - 674
  • [39] Natural balance of multicell converters: The two-cell case
    Wilkinson, Richardt H.
    Meynard, Thierry A.
    Mouton, Hendrik du Toit
    IEEE TRANSACTIONS ON POWER ELECTRONICS, 2006, 21 (06) : 1649 - 1657
  • [40] Large Dimensional Analysis of Cooperative Multicell Precoding with Local Individual CSI
    Wang, Longwei
    Liang, Qilian
    2016 IEEE Conference on Computer Communications Workshops (INFOCOM WKSHPS), 2016,