Distributed secondary control of islanded microgrids using modified integral backstepping technique

被引:0
|
作者
Seyedeh Zahra Paylakhi
Naser Pariz
Mohammad Hossein Javidi Dasht Bayaz
Mohammad Bagher Naghibi Sistani
机构
[1] Ferdowsi University of Mashhad,Department of Electrical Engineering, Faculty of Engineering
关键词
Distributed secondary voltage control; Modified integral backstepping control; Distributed power generation (DG); Sliding-mode control (SMC);
D O I
暂无
中图分类号
学科分类号
摘要
This paper develops a nonlinear secondary voltage control scheme for a droop-controlled inverter-based islanded microgrid (MG). The proposed secondary voltage control is a distributed scheme that enjoys a simple communication network. The applied modified integral backstepping (MIB) controllers restore the voltage of each distribution generation (DG) to their reference values. An integral term is included in the conventional backstepping method to improve its dynamic performance in tracking a reference signal when voltage deviations and load disturbances exist. The control input law’s design and the closed-loop system’s stability are realized by the Lyapunov criterion in a step-by-step procedure. The proposed secondary voltage control’s effectiveness for a prototype microgrid system is verified by simulating it on MATLAB and comparing the results with conventional backstepping and sliding mode control (SMC). A considerable improvement in the transient response of the MG system and computation time of the input generation is accomplished by applying the proposed MIB technique.
引用
收藏
页码:2011 / 2019
页数:8
相关论文
共 50 条
  • [1] Distributed secondary control of islanded microgrids using modified integral backstepping technique
    Paylakhi, Seyedeh Zahra
    Pariz, Naser
    Bayaz, Mohammad Hossein Javidi Dasht
    Sistani, Mohammad Bagher Naghibi
    [J]. INTERNATIONAL JOURNAL OF DYNAMICS AND CONTROL, 2022, 10 (06) : 2011 - 2019
  • [2] Backstepping and Sliding-Mode Techniques Applied to Distributed Secondary Control of Islanded Microgrids
    Li, Jian
    Zhang, Dezhen
    [J]. ASIAN JOURNAL OF CONTROL, 2018, 20 (03) : 1288 - 1295
  • [3] A robust distributed secondary voltage control method for islanded microgrids
    Zhang, Mingmin
    Li, Yong
    Liu, Fang
    Lee, Wei-Jen
    Peng, Yanjian
    Liu, Yuxin
    Li, Wenguo
    Cao, Yijia
    [J]. INTERNATIONAL JOURNAL OF ELECTRICAL POWER & ENERGY SYSTEMS, 2020, 121
  • [4] A Novel Distributed Secondary Coordination Control Approach for Islanded Microgrids
    Lu, Xiaoqing
    Yu, Xinghuo
    Lai, Jingang
    Wang, Yaonan
    Guerrero, Josep M.
    [J]. IEEE TRANSACTIONS ON SMART GRID, 2018, 9 (04) : 2726 - 2740
  • [5] Advanced Distributed Cooperative Secondary Control of Islanded DC Microgrids
    Aluko, Anuoluwapo
    Buraimoh, Elutunji
    Oni, Oluwafemi Emmanuel
    Davidson, Innocent Ewean
    [J]. ENERGIES, 2022, 15 (11)
  • [6] Distributed Secondary Control for Islanded Microgrids-A Novel Approach
    Shafiee, Qobad
    Guerrero, Josep M.
    Vasquez, Juan C.
    [J]. IEEE TRANSACTIONS ON POWER ELECTRONICS, 2014, 29 (02) : 1018 - 1031
  • [7] Distributed Secondary Control for Islanded MicroGrids - A Networked Control Systems Approach
    Shafiee, Qobad
    Vasquez, Juan C.
    Guerrero, Josep M.
    [J]. 38TH ANNUAL CONFERENCE ON IEEE INDUSTRIAL ELECTRONICS SOCIETY (IECON 2012), 2012, : 5637 - 5642
  • [8] Distributed Discrete Robust Secondary Cooperative Control for Islanded Microgrids
    Xu, Yinliang
    Guo, Qinglai
    Sun, Hongbin
    Fei, Zhongyang
    [J]. IEEE TRANSACTIONS ON SMART GRID, 2019, 10 (04) : 3620 - 3629
  • [9] A Unified Distributed Digital Control Architecture for Secondary Control in Islanded Microgrids
    Andreotti, Amedeo
    Caiazzo, Bianca
    Leccese, Sara
    Petrillo, Alberto
    Santini, Stefania
    [J]. IFAC PAPERSONLINE, 2024, 58 (13): : 74 - 79
  • [10] Distributed Secondary Control for Islanded Microgrids With Mobile Emergency Resources
    Zhou, Quan
    Shahidehpour, Mohammad
    Yan, Mingyu
    Wu, Xi
    Alabdulwahab, Ahmed
    Abusorrah, Abdullah
    [J]. IEEE TRANSACTIONS ON POWER SYSTEMS, 2020, 35 (02) : 1389 - 1399