A Review of Load Frequency Control Schemes Deployed for Wind-Integrated Power Systems

被引:11
|
作者
Asghar, Rafiq [1 ]
Fulginei, Francesco Riganti [1 ]
Wadood, Hamid [2 ]
Saeed, Sarmad [2 ]
机构
[1] Roma Tre Univ, Dept Ind Elect & Mech Engn, Via V Volterra 62, I-00146 Rome, Italy
[2] Univ Alabama Birmingham, Dept Comp Sci, Birmingham, AL 35294 USA
关键词
load frequency control; wind energy; power system models; advanced controllers; soft computing tools; MODEL-PREDICTIVE CONTROL; DISTURBANCE-OBSERVER; ELECTRIC VEHICLES; DISTRIBUTED MPC; FUZZY-LOGIC; LFC; OPTIMIZATION; ALGORITHM; NONLINEARITIES; ENVIRONMENT;
D O I
10.3390/su15108380
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Load frequency control (LFC) has recently gained importance due to the increasing integration of wind energy in contemporary power systems. Hence, several power system models, control techniques, and controllers have been developed to improve the efficiency, resilience, flexibility, and economic feasibility of LFC. Critical factors, such as energy systems, resources, optimization approaches, resilience, and transient stability have been studied to demonstrate the uniqueness of the proposed design. This paper examines the most recent advances in LFC techniques for wind-based power systems. Moreover, the use of classical, artificial intelligence, model predictive control, sliding mode control, cascade controllers, and other newly designed and adopted controllers in the LFC area is thoroughly examined. Statistical analysis and a comparison table are used to evaluate the advantages, disadvantages, and applications of various controllers. Finally, this paper presents a comprehensive overview of contemporary and other widely used soft computing tools for the LFC issue. This detailed literature review will assist researchers in overcoming the gap between current progress, application, limitations, and future developments of wind energy in LFC.
引用
收藏
页数:29
相关论文
共 50 条
  • [1] Retrofit Control of Wind-Integrated Power Systems
    Sadamoto, Tomonori
    Chakrabortty, Aranya
    Ishizaki, Takayuki
    Imura, Jun-ichi
    IEEE TRANSACTIONS ON POWER SYSTEMS, 2018, 33 (03) : 2804 - 2815
  • [2] Forced Low Frequency Oscillation of Wind-Integrated Power Systems
    Li, Cong
    Zhang, Wei
    Liu, Ruiye
    2016 IEEE POWER & ENERGY SOCIETY INNOVATIVE SMART GRID TECHNOLOGIES CONFERENCE (ISGT), 2016,
  • [3] A Comprehensive Review on Voltage Stability in Wind-Integrated Power Systems
    Malik, Farhan Hameed
    Khan, Muhammad Waleed
    Rahman, Tauheed Ur
    Ehtisham, Muhammad
    Faheem, Muhammad
    Haider, Zunaib Maqsood
    Lehtonen, Matti
    ENERGIES, 2024, 17 (03)
  • [4] Risk Control of Transmission Line Overload for Wind-Integrated Power Systems
    李雪
    路攀
    王春亮
    Journal of Donghua University(English Edition), 2014, 31 (02) : 124 - 127
  • [6] Fuzzy-based frequency security evaluation of wind-integrated power systems
    Steinkohl, Joachim
    Peyghami, Saeed
    Wang, Xiongfei
    Davari, Pooya
    Blaabjerg, Frede
    IET ENERGY SYSTEMS INTEGRATION, 2021, 3 (04) : 451 - 463
  • [7] Operating Risk Analysis of Wind-integrated Power Systems
    Karki, Rajesh
    Thapa, Suman
    Billinton, Roy
    ELECTRIC POWER COMPONENTS AND SYSTEMS, 2012, 40 (04) : 399 - 413
  • [8] Effect of hourly wind trends on the peak load-carrying capability of wind-integrated power systems
    Billinton, R.
    Karki, B.
    PROCEEDINGS OF THE INSTITUTION OF MECHANICAL ENGINEERS PART O-JOURNAL OF RISK AND RELIABILITY, 2009, 223 (O4) : 279 - 287
  • [9] Load frequency control for wind-integrated multi-area power systems: An area-based event-triggered sliding mode scheme
    Xu, Kun
    Niu, Yugang
    Yang, Yekai
    JOURNAL OF THE FRANKLIN INSTITUTE-ENGINEERING AND APPLIED MATHEMATICS, 2022, 359 (17): : 9451 - 9472
  • [10] Load frequency control for wind-integrated multi-area power systems: An area-based event-triggered sliding mode scheme
    Xu, Kun
    Niu, Yugang
    Yang, Yekai
    Journal of the Franklin Institute, 2022, 359 (17) : 9451 - 9472