Adaptive droop control of unbalanced voltage in the multi-node bipolar DC microgrid based on fuzzy control

被引:20
作者
Guo, Chunsheng [1 ]
Liao, Jianquan [1 ]
Zhang, Yu [2 ]
机构
[1] Sichuan Univ, Sch Elect Engn, Chengdu 610065, Peoples R China
[2] Chongqing Univ, State Key Lab Power Transmiss Equipment & Syst Sec, Chongqing 400044, Peoples R China
关键词
Adaptive control; Bipolar DC microgrid; Droop control; Fuzzy control; POWER-FLOW; CONTROL STRATEGY; AC;
D O I
10.1016/j.ijepes.2022.108300
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Multi-node bipolar DC microgrid can provide more voltage level interfaces and has higher security and reliability than the unipolar DC microgrid. However, in the multi-node bipolar DC microgrid, the operation of load and line resistance will lead to the deviation of DC bus voltage and increase the circuit power consumption which will affect the stable operation of the whole microgrid. In order to control the unbalanced voltage, an adaptive droop controller based on the fuzzy algorithm is innovatively applied in the design of a multi-node bipolar DC microgrid. This research mainly analyzes the influence of unbalanced load and line resistance on droop control in the multi-node bipolar DC microgrid. According to the analysis, an adaptive droop controller based on the fuzzy algorithm with the voltage deviation, voltage unbalance coefficient, and state of charge (SOC) as inputs is designed to obtain the correction of the droop coefficient. The model of a multi-node bipolar DC microgrid is established in MATLAB/Simulink platform and the effectiveness of the proposed adaptive droop control based on the fuzzy algorithm is verified through the simulation results.
引用
收藏
页数:15
相关论文
共 50 条
  • [31] Control strategy of multiple interlinking converters for low-voltage hybrid microgrid based on adaptive droop
    Zong, Shumin
    Lyu, Yihang
    Wang, Can
    ENERGY REPORTS, 2023, 9 : 721 - 731
  • [32] Distributed Adaptive Droop Control for DC Distribution Systems
    Nasirian, Vahidreza
    Davoudi, Ali
    Lewis, Frank L.
    Guerrero, Josep M.
    IEEE TRANSACTIONS ON ENERGY CONVERSION, 2014, 29 (04) : 944 - 956
  • [33] Frequency and Voltage Droop Control of Parallel Inverters in Microgrid
    Raj, Chethan D.
    Gaonkar, D. N.
    2016 2ND INTERNATIONAL CONFERENCE ON CONTROL, INSTRUMENTATION, ENERGY & COMMUNICATION (CIEC), 2016, : 407 - 411
  • [34] An Adaptive Droop Control Method for Low Voltage DC Microgrids
    Khorsandi, A.
    Ashourloo, M.
    Mokhtari, H.
    2014 5TH POWER ELECTRONICS, DRIVE SYSTEMS AND TECHNOLOGIES CONFERENCE (PEDSTC), 2014, : 84 - 89
  • [35] Fault control strategy of a low-voltage microgrid based on droop control
    Wang Z.
    Mu L.
    Fang C.
    Dianli Xitong Baohu yu Kongzhi/Power System Protection and Control, 2020, 48 (22): : 84 - 90
  • [36] Distributed droop control of dc microgrid for improved voltage regulation and current sharing
    Kumar, Rohit
    Pathak, Mukesh K.
    IET RENEWABLE POWER GENERATION, 2020, 14 (13) : 2499 - 2506
  • [37] Analogy Between Conventional Grid Control and Islanded Microgrid Control Based on a Global DC-Link Voltage Droop
    Vandoorn, Tine L.
    Meersman, Bart
    De Kooning, Jeroen D. M.
    Vandevelde, Lieven
    IEEE TRANSACTIONS ON POWER DELIVERY, 2012, 27 (03) : 1405 - 1414
  • [38] Improved Droop Control based Voltage Compensation and Variable Droop Coefficient in DC Microgrids
    Li, Chengcheng
    Wu, Jianguo
    Zhang, Kun
    Dai, Xiang
    Xu, Sheng
    2016 UKACC 11TH INTERNATIONAL CONFERENCE ON CONTROL (CONTROL), 2016,
  • [39] ANALYSIS OF NON-LINEAR ADAPTIVE VOLTAGE DROOP CONTROL METHOD APPLIED TO A GRID CONNECTED DC MICROGRID
    Ferreira, Rodrigo A. F.
    Barbosa, Pedro G.
    Braga, Henrique A. C.
    Ferreira, Andre A.
    2013 BRAZILIAN POWER ELECTRONICS CONFERENCE (COBEP), 2013, : 1067 - 1074
  • [40] Research on Adaptive Droop Control Strategy for a Solar-Storage DC Microgrid
    Xu, Zhanpeng
    Chen, Fuxin
    Chen, Kewei
    Lu, Qinfen
    ENERGIES, 2024, 17 (06)