Application of polynomial regression and MILP for under-frequency load shedding scheme in islanded distribution system

被引:8
|
作者
Sarwar, Sohail [1 ]
Mokhlis, Hazlie [1 ]
Othman, Mohamadariff [1 ]
Shareef, Hussain [2 ]
Wang, Li [3 ]
Mansor, Nurulafiqah Nadzirah [1 ]
Khairuddin, Anis Salwa Mohd [1 ]
Mohamad, Hasmaini [4 ]
机构
[1] Univ Malaya, Fac Engn, Dept Elect Engn, Kuala Lumpur 50603, Malaysia
[2] United Arab Emirates Univ, Dept Elect Engn, Al Ain 155511, U Arab Emirates
[3] Natl Cheng Kung Univ, Dept Elect Engn, Tainan 70101, Taiwan
[4] Univ Teknol MARA, Sch Elect Engn, Shah Alam 40450, Malaysia
关键词
Frequency instability; Load priority; Mixed integer linear programming; Polynomial regression; System blackout; Under frequency load shedding; ENHANCEMENT;
D O I
10.1016/j.aej.2021.06.028
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Distributed Generation (DG) integration, especially based on renewable energy resources, has gained great attention by power utilities and frequently utilized in the electrical distribution systems. However, DG integration imposes some risks towards system stability which may lead to system blackouts. This mainly occurs when the grid is decoupled from a portion of the distribution system consisting DGs while the total load demand is greater than total DGs output power. In order to overcome this problem, load shedding technique can be adopted to stabilize the system frequency. However, existing load shedding techniques were unable to accurately estimate the power imbalance due the variation in system loading. This results in excessive/inadequate load shedding to stabilize the system frequency. Moreover, random selection of the loads without load prioritization might cause vital loads to be shed. Therefore, in this paper, a new load shedding strategy for islanded distribution system is proposed. Polynomial regression analysis estimates the power mismatch while MILP optimization estimates optimal load combination for shedding. Furthermore, load priority (i.e., vital, non-vital, and semi-vital) is also considered to avoid disconnecting vital loads. Efficiency of the proposed scheme is evaluated on three different test systems. Validation is performed by modelling the proposed load shedding on PSCAD/EMTDC software for dynamic analysis. From the results, it can be analyzed that the proposed technique is superior compared to other techniques proposed in the literature. (C) 2021 THE AUTHORS. Published by Elsevier BV on behalf of Faculty of Engineering, Alexandria University.
引用
收藏
页码:659 / 674
页数:16
相关论文
共 50 条
  • [31] Under-Frequency Load Shedding Via Integer Programming
    Ceja-Gomez, Frida
    Qadri, Syed Saadat
    Galiana, Francisco D.
    IEEE TRANSACTIONS ON POWER SYSTEMS, 2012, 27 (03) : 1387 - 1394
  • [32] Implementation of General Under-frequency Load Shedding Scheme in European Network: challenges and opportunities
    Lytvynchuk, Volodymyr A.
    Kaplin, Mykola, I
    Bolotnyi, Nickolai P.
    Karmazin, Oleksii O.
    2020 IEEE 7TH INTERNATIONAL CONFERENCE ON ENERGY SMART SYSTEMS (2020 IEEE ESS), 2020, : 215 - 220
  • [33] V2G effects on frequency regulation and under-frequency load shedding in a quasi-islanded grid
    Dan, Andras
    Farkas, Csaba
    Prikler, Laszlo
    2013 IEEE GRENOBLE POWERTECH (POWERTECH), 2013,
  • [34] Transient stability control by means of under-frequency load shedding and a hybrid control scheme
    Le Roux, P. F.
    Bansal, R. C.
    JOURNAL OF ENERGY IN SOUTHERN AFRICA, 2017, 28 (04) : 41 - 53
  • [35] Adaptive Under-Frequency Load Shedding Scheme in System Integrated with High Wind Power Penetration: Impacts and Improvements
    Li, Shun
    Tang, Fei
    Shao, Youguo
    Liao, Qingfen
    ENERGIES, 2017, 10 (09):
  • [36] Energy Storage System Control for Prevention of Transient Under-Frequency Load Shedding
    Pulendran, Shuthakini
    Tate, Joseph Euzebe
    IEEE TRANSACTIONS ON SMART GRID, 2017, 8 (02) : 927 - 936
  • [37] A Smart Under-Frequency Load Shedding Scheme based on Takagi-Sugeno Fuzzy Inference System and Flexible Load Priority
    Laghari, J. A.
    Almani, Suhail Ahmed
    Kumar, Jagdesh
    Mokhlis, Hazlie
    Abu Bakar, Ab Halim
    INTERNATIONAL JOURNAL OF ADVANCED COMPUTER SCIENCE AND APPLICATIONS, 2018, 9 (03) : 125 - 131
  • [38] Impact of Reverse Power Flow in Distribution Feeders on Under-Frequency Load Shedding Schemes
    Frost, Russell
    Zieland, Lucas
    Sharafi, Dean
    Susanto, Julius
    2020 INTERNATIONAL CONFERENCE ON SMART GRIDS AND ENERGY SYSTEMS (SGES 2020), 2020, : 100 - 104
  • [39] A New Under-Frequency Load Shedding Scheme Based on Adaptive Neuro-Fuzzy Inference System and Evolutionary Programming Shedding Priority
    Dridy, Mohammad
    Mokhlis, Hazlie
    Mekhilef, Saad
    2018 2ND INTERNATIONAL CONFERENCE ON ENERGY AND ENVIRONMENTAL SCIENCE, 2018, 164
  • [40] Optimal Estimation of Under-Frequency Load Shedding Scheme Parameters by Considering Virtual Inertia Injection
    Bustamante-Mesa, Santiago
    Gonzalez-Sanchez, Jorge W.
    Saldarriaga-Zuluaga, Sergio D.
    Lopez-Lezama, Jesus M.
    Munoz-Galeano, Nicolas
    ENERGIES, 2024, 17 (02)