Application of AHP Algorithm to Coordinate Multiple Load Shedding Factors in the Microgrid

被引:1
|
作者
An Thai Nguyen [1 ]
Trong Nghia Le [1 ]
Huy Anh Quyen [1 ]
Minh Vu Nguyen Hoang [2 ]
Phung Bao Long Nguyen [1 ]
机构
[1] HCMC Univ Technol & Educ, Fac Elect & Elect Engn, Ho Chi Minh City 71313, CO, Vietnam
[2] HCMC Univ Architecture, Ho Chi Minh City 72407, CO, Vietnam
关键词
AHP; Load shedding; Load importance factor (LIF); Microgrid; Voltage electrical distance (VED); Voltage sensitivity index (VSI);
D O I
10.1080/03772063.2021.1962744
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
The rapidly drop of frequency in the microgrid (MG) system when it operates under island operation has caused frequency stability problems. In case, generators and renewable energy sources cannot supply enough power to restore the frequency, the load shedding will be proceeded. This paper proposes the load shedding method based on the coordinate multiple load shedding factors when the MG system operates in island mode. This proposed method carries out an approach through two main steps. Firstly, the optimal amount of load shedding power considering renewable energy sources and the ability to adjust the primary and secondary frequencies of the generator is calculated to restore the frequency to the allowed range. Next, distributing the optimal load shedding power for each bus is based on the combination of different criteria to meet the economic and technical goals. On the technical side, this paper also considers two criteria about the voltage distance, and the voltage sensitivity index. These two criteria contribute to reducing voltage drop and improving voltage stability when the microgrid operates in island mode. From the economic perspective, it considers the load importance factor, thereby minimizing the economic losses caused by load shedding. The AHP algorithm is applied in this paper to determine the importance of loads and the importance of the different criteria when they are combined. The effectiveness of the proposed method is demonstrated through simulation of IEEE 16-bus microgrid with 6-source.
引用
收藏
页码:5276 / 5288
页数:13
相关论文
共 50 条
  • [11] A Robust Load Shedding Strategy for Microgrid Islanding Transition
    Liu, Guodong
    Xiao, Bailu
    Starke, Michael
    Ceylan, Oguzhan
    Tomsovic, Kevin
    2016 IEEE/PES TRANSMISSION AND DISTRIBUTION CONFERENCE AND EXPOSITION (T&D), 2016,
  • [12] Load shedding optimization for economic operation cost in a microgrid
    Alqunun, Khalid
    Guesmi, Tawfik
    Farah, Anouar
    ELECTRICAL ENGINEERING, 2020, 102 (02) : 779 - 791
  • [13] The Application of the 0-1 Knapsack Problem to the Load-Shedding Problem in Microgrid Operation
    Choi, Soojeong
    Park, Sunju
    Kim, Hak-Man
    CONTROL AND AUTOMATION, AND ENERGY SYSTEM ENGINEERING, 2011, 256 : 227 - +
  • [14] Microgrid and load shedding scheme during islanded mode: A review
    Abu Bakar, Nur Najihah
    Hassan, Mohammad Yusri
    Sulaima, Mohamad Fani
    Nasir, Mohamad Na'im Mohd
    Khamis, Aziah
    RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2017, 71 : 161 - 169
  • [15] Under-frequency load shedding of microgrid systems: a review
    Madiba, T.
    Bansal, R. C.
    Mbungu, N. T.
    Bettayeb, M.
    Naidoo, R. M.
    Siti, M. W.
    INTERNATIONAL JOURNAL OF MODELLING AND SIMULATION, 2022, 42 (04): : 653 - 679
  • [16] Development of Intelligent Controlled Microgrid for Power Sharing and Load Shedding
    Lin, Faa-Jeng
    Tan, Kuang-Hsiung
    Chang, Chao-Fu
    Li, Meng-Yang
    Tseng, Tzu-Yu
    IEEE TRANSACTIONS ON POWER ELECTRONICS, 2022, 37 (07) : 7928 - 7940
  • [17] Dynamic load shedding for an islanded microgrid with limited generation resources
    Gao, Haixiang
    Chen, Ying
    Xu, Yin
    Liu, Chen-Ching
    IET GENERATION TRANSMISSION & DISTRIBUTION, 2016, 10 (12) : 2953 - 2961
  • [18] Multiagent System for Priority-Based Load Shedding in Microgrid
    Kato, Takumi
    Takahashi, Hideyuki
    Sasai, Kazuto
    Lim, Yujin
    Kim, Hak-Man
    Kitagata, Gen
    Kinoshita, Tetsuo
    2013 IEEE 37TH ANNUAL COMPUTER SOFTWARE AND APPLICATIONS CONFERENCE WORKSHOPS (COMPSACW), 2013, : 540 - 545
  • [19] Optimal Load-Shedding Control of a Microgrid Power System
    Madiba, T.
    Bansal, Ramesh C.
    ELECTRIC POWER COMPONENTS AND SYSTEMS, 2018, 46 (07) : 768 - 787
  • [20] APPLICATION OF AHP FOR SELECTION OF SOURCE FOR MICROGRID SYSTEM
    Banerjee, Subhajit
    Majumder, Mrinmoy
    2016 INTERNATIONAL CONFERENCE ON ENERGY EFFICIENT TECHNOLOGIES FOR SUSTAINABILITY (ICEETS), 2016, : 112 - 115