Model-free control for frequency response support in microgrids utilizing wind turbines 1

被引:17
|
作者
Park, Byungkwon [1 ]
Zhang, Yichen [2 ]
Olama, Mohammed [1 ]
Kuruganti, Teja [1 ]
机构
[1] Oak Ridge Natl Lab, Computat Sci & Engn Div, POB 2009, Oak Ridge, TN 37831 USA
[2] Argonne Natl Lab, Energy Syst Div, Lemont, IL 60439 USA
关键词
Microgrids; Model-free control; Model reference concept; Inertia emulation; Primary frequency control; INERTIAL RESPONSE; FRAMEWORK;
D O I
10.1016/j.epsr.2021.107080
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
Islanded microgrids integrated with renewable energy resources bring additional challenges to the primary frequency control due to their power-electronic interfaced generations. Developing an efficient control strategy for inertia emulation and frequency response support of microgrids is becoming an important issue. Wind turbine dynamics, however, will degrade the emulated inertial and primary responses with most traditional control strategies. On the other hand, compensation methods often require the knowledge of system models at the design stage and state estimation for feedback once deployed online. To overcome these challenges, this paper explores a model-free control (MFC) strategy to emulate the desired inertia and support the frequency response of a diesel-wind microgrid system. The proposed MFC strategy utilizes a model reference concept to obtain guaranteed inertial response and improve the frequency response of microgrids. This work considers different control strategies with different operating points. The proposed controller is implemented and verified using the modified 33-bus full nonlinear model of the three-phase diesel-wind system in Simulink. Simulation results demonstrate the improved frequency response by precisely emulating the desired inertia using the MFC strategy.
引用
收藏
页数:10
相关论文
共 50 条
  • [31] MODEL FREE ADAPTIVE CONTROL FOR FLOATING OFFSHORE WIND TURBINES
    Qi L.
    Shi K.
    Guo N.
    Li B.
    Zhang Z.
    Xu J.
    Taiyangneng Xuebao/Acta Energiae Solaris Sinica, 2023, 44 (05): : 384 - 390
  • [32] Frequency Response From Wind Turbines
    Ekanayake, J.
    Jenkins, N.
    Strbac, G.
    WIND ENGINEERING, 2008, 32 (06) : 573 - 586
  • [33] Control Method for Variable Speed Wind Turbines to Support Temporary Primary Frequency Control
    Wang, Haijiao
    Chen, Zhe
    Jiang, Quanyuan
    2014 IEEE PES T&D CONFERENCE AND EXPOSITION, 2014,
  • [34] Model-free control
    Fliess, Michel
    Join, Cedric
    INTERNATIONAL JOURNAL OF CONTROL, 2013, 86 (12) : 2228 - 2252
  • [35] Primary frequency control by wind turbines
    Erlich, I.
    Wilch, M.
    IEEE POWER AND ENERGY SOCIETY GENERAL MEETING 2010, 2010,
  • [36] Model-free adaptive load frequency control for power systems with wind penetration under deregulation environment
    Zeng, Yiming
    Bu, Xuhui
    Yin, Yanling
    ASIAN JOURNAL OF CONTROL, 2025, 27 (02) : 948 - 961
  • [37] Model-Free Optimal Control of Inverter for Dynamic Voltage Support
    Guo, Yifei
    Pal, Bikash C.
    Jabr, Rabih A.
    IEEE TRANSACTIONS ON POWER SYSTEMS, 2023, 38 (06) : 5860 - 5871
  • [38] Frequency collaborative support control of wind farm considering operation state difference of wind turbines
    Ji X.
    Jiang K.
    Yao Y.
    Liu D.
    Yao W.
    Cao K.
    Wen J.
    Dianli Zidonghua Shebei/Electric Power Automation Equipment, 2024, 44 (03): : 98 - 104
  • [39] Supplemental Control for System Frequency Support of DFIG-Based Wind Turbines
    Abdeen, Mohamed
    Sayyed, Muhammad
    Luis Dominguez-Garcia, Jose
    Kamel, Salah
    IEEE ACCESS, 2022, 10 (69364-69372): : 69364 - 69372
  • [40] Specified time consensus control of ESSs for frequency support with DFIG wind turbines
    Xiong, Linyun
    Yang, Shaobo
    He, Yalan
    Li, Penghan
    Huang, Sunhua
    Wang, Ziqiang
    Wang, Jie
    INTERNATIONAL JOURNAL OF ELECTRICAL POWER & ENERGY SYSTEMS, 2022, 135