Unified coordination control strategy for DC solid-state transformer in DC microgrid

被引:0
|
作者
Yanbing Jia
Pei Zhao
Jinjie Tian
Xiangqi Meng
Han Wu
机构
[1] Taiyuan University of Technology,College of Electrical and Power Engineering
[2] State Grid Shanxi Electric Power Company,Datong Power Supply Company
来源
关键词
DC microgrid; DC solid state transformer (DCSST); Bus voltage; Coordinated control;
D O I
暂无
中图分类号
学科分类号
摘要
The existing control strategies of DC solid-state transformer (DCSST) are based on DC distribution system, which is mainly concentrated on one side voltage stability control without considering the change of control objectives under different conditions. Thus, they are unsuitable for multiterminal and multisource DC microgrid. The coordinated control strategy of DCSST in multiterminal and multisource DC microgrid is studied in this paper. The DCSST circuit models based on the series–parallel structure of dual active full bridge converter are established, and the basic control modes are analyzed: control low voltage mode and control high voltage mode. Combined with the characteristics of DC bus voltage fluctuation and the operation conditions of DCSST, a unified coordinated control strategy is proposed. Experimental results show that the proposed control strategy can correctly identify the different power states of the two sides of the system, control the power exchange between the two sides of the system, and maintain the stable operation of the whole DC system.
引用
收藏
页码:1374 / 1385
页数:11
相关论文
共 50 条
  • [31] Investigation of Low-Voltage Solid-State DC Breaker Configurations for DC Microgrid Applications
    Martin, Witness A.
    Deng, Cheng
    Fiddiansyah, Dimas
    Balda, Juan Carlos
    2016 IEEE INTERNATIONAL TELECOMMUNICATIONS ENERGY CONFERENCE (INTELEC), 2016,
  • [32] DC Solid State Transformer Circulation Current Suppression Strategy
    Meng X.
    Jia Y.
    Ren C.
    Han X.
    Lin X.
    Zhang B.
    Dianwang Jishu/Power System Technology, 2021, 45 (01): : 356 - 363
  • [33] DC Solid-State Circuit Breakers with Two-Winding Coupled Inductor for DC Microgrid
    Park, Jung-min
    Byun, Hyung-jun
    Kim, Sung-hun
    Kim, Si-hwan
    Won, Chung-yuen
    ENERGIES, 2021, 14 (14)
  • [34] A coordinated DC voltage control strategy for cascaded solid state transformer with star configuration
    Ji, Zhendong
    Sun, Yichao
    Jin, Cheng
    Wang, Jianhua
    Zhao, Jianfeng
    TURKISH JOURNAL OF ELECTRICAL ENGINEERING AND COMPUTER SCIENCES, 2019, 27 (01) : 634 - 648
  • [35] A Hybrid Modular DC Solid-State Transformer Combining High Efficiency and Control Flexibility
    Sun, Yuwei
    Gao, Zhen
    Fu, Chao
    Wu, Chengjie
    Chen, Zhe
    IEEE TRANSACTIONS ON POWER ELECTRONICS, 2020, 35 (04) : 3434 - 3449
  • [36] Operation and control strategy of DC microgrid
    Liu, Jiaying
    Han, Xiaoqing
    Wang, Lei
    Zhang, Peng
    Wang, Jing
    Dianwang Jishu/Power System Technology, 2014, 38 (09): : 2356 - 2362
  • [37] Unified control strategy of islanding and grid-connected operations for DC microgrid
    School of Electrical Engineering and Automation, Harbin Institute of Technology, Harbin
    Heilongjiang Province
    150001, China
    Zhongguo Dianji Gongcheng Xuebao, 17 (4388-4396):
  • [38] A Unified Distributed Control Strategy for DC Microgrid with Hybrid Energy Storage Devices
    Naidu, Bonu Ramesh
    Jose, Sherin
    Singh, Divyank
    Bajpai, Prabodh
    2018 20TH NATIONAL POWER SYSTEMS CONFERENCE (NPSC), 2018,
  • [39] Configurable ISOP-IPOP DC-DC Converter for Universal Solid-State Transformer
    Apte, Pramod
    Friebe, Jens
    Fraeger, Lukas
    2022 24TH EUROPEAN CONFERENCE ON POWER ELECTRONICS AND APPLICATIONS (EPE'22 ECCE EUROPE), 2022,
  • [40] Design of a Modular Multilevel DC/DC Converter to Solid-State Transformer in a Green Hydrogen System
    Queiroz, Samuel S.
    Costa, Levy F.
    2024 IEEE APPLIED POWER ELECTRONICS CONFERENCE AND EXPOSITION, APEC, 2024, : 2282 - 2288