Amultimicrogridenergy management model implementing an evolutionary game-theoretic approach

被引:18
|
作者
Aguila-Leon, Jesus [1 ,2 ]
Chinas-Palacios, Cristian [1 ,2 ]
Garcia, Edith X. M. [1 ]
Vargas-Salgado, Carlos [2 ,3 ]
机构
[1] Univ Guadalajara, Dept Estudios Agua & Energia, Ctr Univ Tonala, Ave Nuevo Perifer 555, Tonala 45425, Mexico
[2] Univ Politecn Valencia, Inst Univ Ingn Energet, Valencia, Spain
[3] Univ Politecn Valencia, Dept Ingn Elect, Valencia, Spain
关键词
distributed generation; energy management; evolutionary game theory; microgrid; multimicrogrid; optimization; ENERGY MANAGEMENT; MICROGRID SYSTEM; POWER MANAGEMENT; FUZZY-LOGIC; OPTIMIZATION; LOAD; STORAGE;
D O I
10.1002/2050-7038.12617
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
Microgrids (MGs) are widely increasing to manage unequal electrical load requirements based on the infrastructure. The goal of this article is to manage energy in a centralized controller multimicrogrid (MMG) system operated at islanded mode. Renewable energy fluctuations in MG due to weather conditions build oscillation in MG operation modes. To solve this, a three-stage energy management MMG system is proposed. The proposed system is composed of operating mode prediction by measuring the weather conditions. In islanded mode, energy management is incorporated using a two-round fuzzy-based speed (TRFS) algorithm followed by evolutionary game theory and status updating by Markov chain. The TRFS algorithm takes into account voltage, frequency, power factor, total harmonic distortion, and loss of produced power probability parameters. The parallel processing of the TRFS algorithm reduces processing time, then a Stackelberg game with a quasi-oppositional symbiotic organisms search approach is carried out for power exchange. Markov chain based future prediction of MG states ensures detection of MG operating mode along with weather changes. Simulations are developed in MATLAB Simulink, and their outcomes show better performance than previous work whose results are evaluated in terms of load and generator output at two modes, power generated at individual MG and exchanged power.
引用
收藏
页数:19
相关论文
共 50 条
  • [21] GAME-THEORETIC MODEL FOR ORGANIZATIONS
    SHAPLEY, LS
    [J]. ECONOMETRICA, 1971, 39 (04) : 98 - &
  • [22] A game-theoretic model of plagiarism
    Hoover G.A.
    [J]. Atlantic Economic Journal, 2006, 34 (4) : 449 - 454
  • [23] An evolutionary game-theoretic analysis of poker strategies
    Ponsen, Marc
    Tuyls, Karl
    Kaisers, Michael
    Ramon, Jan
    [J]. ENTERTAINMENT COMPUTING, 2009, 1 (01) : 39 - 45
  • [24] A game-theoretic approach to efficient power management in sensor networks
    Campos-Nanez, Enrique
    Garcia, Alfredo
    Li, Chenyang
    [J]. OPERATIONS RESEARCH, 2008, 56 (03) : 552 - 561
  • [25] Strategic exploration of battery waste management: A game-theoretic approach
    Kaushal, Rajendra Kumar
    Nema, Arvind K.
    Chaudhary, Jyoti
    [J]. WASTE MANAGEMENT & RESEARCH, 2015, 33 (07) : 681 - 689
  • [26] Game-theoretic Approach to Fleet Management for Vehicle to Grid Services
    Ziad, Choucair
    Rajamani, Haile-Selassie
    Manikas, Ioannis
    [J]. 2019 IEEE 19TH INTERNATIONAL SYMPOSIUM ON SIGNAL PROCESSING AND INFORMATION TECHNOLOGY (ISSPIT 2019), 2019,
  • [27] An Efficient Game-Theoretic Approach for Resource Management in Cloud Federation
    Thakur, Pawan Kumar
    Thomas, Manoj V.
    Chandrasekaran, K.
    [J]. 2015 INTERNATIONAL CONFERENCE ON EMERGING RESEARCH IN ELECTRONICS, COMPUTER SCIENCE AND TECHNOLOGY (ICERECT), 2015, : 70 - 75
  • [28] A Survey of Game-Theoretic Approach for Resource Management in Cloud Computing
    Agbaje, M. O.
    Ohwo, O. B.
    Ayanwola, T. G.
    Olufunmilola, Ogunyolu
    [J]. JOURNAL OF COMPUTER NETWORKS AND COMMUNICATIONS, 2022, 2022
  • [29] A GAME-THEORETIC APPROACH TO NETWORK EQUILIBRIUM
    HAURIE, A
    MARCOTTE, P
    [J]. MATHEMATICAL PROGRAMMING STUDY, 1986, 26 : 252 - 255
  • [30] A game-theoretic approach to decision in FDI
    Darkhovski, B
    Staroswiecki, M
    [J]. IEEE TRANSACTIONS ON AUTOMATIC CONTROL, 2003, 48 (05) : 853 - 858