Online adaptive type-2 fuzzy logic control for load frequency of multi-area power system

被引:12
|
作者
Shakibjoo, Ali Dokht [1 ]
Moradzadeh, Mohammad [1 ]
Moussavi, Seyed Zeinolabedin [1 ]
Afrakhte, Hossein [2 ]
机构
[1] Shahid Rajaee Teacher Training Univ, Elect Engn Dept, Tehran, Iran
[2] Univ Guilan, Elect Engn Dept, Rasht, Iran
关键词
LFC; adaptive type-2 fuzzy control; multi-area power system; MLP; back-propagation and gradient descent; AUTOMATIC-GENERATION CONTROL; PID CONTROLLER; DESIGN; SCHEME;
D O I
10.3233/JIFS-181963
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
Load frequency control (LFC) is one of the important control problems in design and operation of power systems as permanent deviation of frequency from nominal value affects power system operation and reliability. This paper presents a control method based on neural network for LFC of a two-area power system containing re-heat thermal plants. System parameters are assumed to be unknown and the proposed type-2 fuzzy controller is designed online, is adaptive and does not require initial adjustment by the operator. The training method of the type-2 fuzzy controller includes error back-propagation and gradient descent. In this paper, since the dynamics of the system is unknown, it is modelled using multilayer perceptron (MLP) structure, and Jacobian of the system is extracted to determine system model. In order to evaluate the robustness of proposed online adaptive fuzzy type-2 controller (OADF) against parameter changes, a time-variant parameter is added to the system. The performance of the controller is compared with the PI, PID, N-PID, fuzzy-PI and neural network controllers. Simulation results illustrate the improved performance of LFC and its capability to overcome uncertain and time-variant parameters.
引用
收藏
页码:1033 / 1042
页数:10
相关论文
共 50 条
  • [31] Automatic generation control of multi-area power system using fuzzy logic controller
    Subbaraj, P.
    Manickavasagam, K.
    EUROPEAN TRANSACTIONS ON ELECTRICAL POWER, 2008, 18 (03): : 266 - 280
  • [32] Distributed Load Frequency Control for Multi-Area Power Systems
    Wang, Lei
    Wang, Chuan
    Wang, Kun
    Wang, He
    Liu, Zhaoyu
    Yu, Wenwu
    2019 TENTH INTERNATIONAL CONFERENCE ON INTELLIGENT CONTROL AND INFORMATION PROCESSING (ICICIP), 2019, : 100 - 105
  • [33] A fuzzy logic decision maker and controller for reducing load frequency oscillations in multi-area power systems
    Altas, I. H.
    Neyens, J.
    2006 POWER ENGINEERING SOCIETY GENERAL MEETING, VOLS 1-9, 2006, : 594 - +
  • [34] A new intelligent online fuzzy tuning approach for multi-area load frequency control: Self Adaptive Modified Bat Algorithm
    Khooban, Mohammad Hassan
    Niknam, Taher
    INTERNATIONAL JOURNAL OF ELECTRICAL POWER & ENERGY SYSTEMS, 2015, 71 : 254 - 261
  • [35] Robust Control of Frequency for Multi-Area Power System
    Tabassum, Fariya
    Rana, M. S.
    2020 IEEE REGION 10 SYMPOSIUM (TENSYMP) - TECHNOLOGY FOR IMPACTFUL SUSTAINABLE DEVELOPMENT, 2020, : 86 - 89
  • [36] Distributed Model Predictive Load Frequency Control of Multi-area Power System with DFIGs
    Yi Zhang
    Xiangjie Liu
    Bin Qu
    IEEE/CAAJournalofAutomaticaSinica, 2017, 4 (01) : 125 - 135
  • [37] Robust load frequency control of multi-area interconnected power system with time delay
    Zhao, Xuemao
    Sun, Yonghui
    Yuan, Chao
    Wei, Zhinong
    Sun, Guoqiang
    2015 34TH CHINESE CONTROL CONFERENCE (CCC), 2015, : 8969 - 8974
  • [38] Distributed Model Predictive Load Frequency Control of Multi-area Power System with DFIGs
    Zhang, Yi
    Liu, Xiangjie
    Qu, Bin
    IEEE-CAA JOURNAL OF AUTOMATICA SINICA, 2017, 4 (01) : 125 - 135
  • [39] Optimal Load Frequency Control of Multi-Area Power System Considering Incremental Control Action
    Kunya, A. B.
    Argin, M.
    Kucuksari, S.
    2019 IEEE TEXAS POWER AND ENERGY CONFERENCE (TPEC), 2019,
  • [40] Distributed model predictive load frequency control of multi-area interconnected power system
    Ma, Miaomiao
    Chen, Hong
    Liu, Xiangjie
    Allgoewer, Frank
    INTERNATIONAL JOURNAL OF ELECTRICAL POWER & ENERGY SYSTEMS, 2014, 62 : 289 - 298