Decentralised coordinated secondary voltage control of multi-area power grids using model predictive control

被引:18
|
作者
Morattab, Arvin [1 ]
Akhrif, Ouassima [1 ]
Saad, Maarouf [1 ]
机构
[1] Ecole Technol Super, Elect Engn, 1100 Notre Dame St, Montreal, PQ, Canada
关键词
CONTROL-SYSTEM; MICROGRIDS; REALIZATION; SIMULATION; ALLOCATION; STABILITY; ALGORITHM; SEARCH; SCHEME;
D O I
10.1049/iet-gtd.2016.2054
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
This manuscript presents a decentralised control scheme for coordinated SVC (CSVC) of large-scale power networks. In this way, for each area of the power grid, a model predictive controller (MPC) which modifies the set points of reactive power compensators participating in CSVC algorithm is designed. The proposed controller takes into account reactive power limits of these compensation devices. The novelty of the method lies in the consideration of measured reactive power deviation on tie-lines between neighbouring areas as measured disturbance and compensation of the disturbance by regional MPC controllers. As another contribution of this work, the validation of the proposed algorithm is done in real-time simulation environment in which the decentralised MPC controllers are run in parallel on separate computational cores. The stability and robustness of the presented algorithm is validated for a large-scale realistic transmission network with 5000 buses considering standard communication protocols to send and receive the data. Simulation results show that the proposed method can regulate the voltages on the pilot buses at the desired values in the presence of load variations and communication delays. Finally, the computational burden of the proposed method is evaluated in real time.
引用
收藏
页码:4546 / 4555
页数:10
相关论文
共 50 条
  • [1] Decentralized Coordinated Secondary Voltage Control of Multi-Area Highly Interconnected Power Grids
    Morattab, Arvin
    Saad, Maarouf
    Akhrif, Ouassima
    Dalal, Asber
    Lefebvre, Serge
    [J]. 2013 IEEE GRENOBLE POWERTECH (POWERTECH), 2013,
  • [2] Model Predictive Coordinated Secondary Voltage Control of Power Grids
    Morattab, Arvin
    Dalal, Asber
    Akhrif, Ouassima
    Saad, Marouf
    Lefebvre, Serge
    [J]. 2012 INTERNATIONAL CONFERENCE ON RENEWABLE ENERGIES FOR DEVELOPING COUNTRIES (REDEC), 2012,
  • [3] Voltage Coordination in Multi-Area Power Systems via Distributed Model Predictive Control
    Moradzadeh, Mohammad
    Boel, Rene
    Vandevelde, Lieven
    [J]. IEEE TRANSACTIONS ON POWER SYSTEMS, 2013, 28 (01) : 513 - 521
  • [4] Terminal Voltage Control of Multi-area Power Systems Using Optimal Control Approach
    Tabassum, Fariya
    Rana, M. S.
    [J]. 2019 5TH INTERNATIONAL CONFERENCE ON ADVANCES IN ELECTRICAL ENGINEERING (ICAEE), 2019, : 496 - 501
  • [5] A Multi-area Coordinated Voltage Control Method Based on Dynamic Games
    Xu, Xuanhao
    Chen, Haoyong
    Xuan, Peizheng
    Zhang, Cong
    [J]. 2014 IEEE PES ASIA-PACIFIC POWER AND ENERGY ENGINEERING CONFERENCE (IEEE PES APPEEC), 2014,
  • [6] Model Predictive Load Frequency Control of Multi-Area Interconnected Power System
    Kunya, A. B.
    Argin, M.
    [J]. 2018 IEEE TEXAS POWER AND ENERGY CONFERENCE (TPEC), 2018,
  • [7] Robust decentralised load-frequency control of multi-area power systems
    Lim, KY
    Wang, Y
    Zhou, R
    [J]. IEE PROCEEDINGS-GENERATION TRANSMISSION AND DISTRIBUTION, 1996, 143 (05) : 377 - 386
  • [8] Distributed Model Predictive Load Frequency Control of Multi-area Power System with DFIGs
    Yi Zhang
    Xiangjie Liu
    Bin Qu
    [J]. IEEE/CAA Journal of Automatica Sinica, 2017, 4 (01) : 125 - 135
  • [9] Fault tolerant load frequency sharing of a multi-area power system using model predictive control
    Saadatinezhad, Hadis
    Ramezani, Amin
    Alizadeh, Mousa
    Hajimalek, Elahe
    [J]. JOURNAL OF ENGINEERING-JOE, 2022, 2022 (03): : 337 - 347
  • [10] Distributed model predictive load frequency control of multi-area interconnected power system
    Ma, Miaomiao
    Chen, Hong
    Liu, Xiangjie
    Allgoewer, Frank
    [J]. INTERNATIONAL JOURNAL OF ELECTRICAL POWER & ENERGY SYSTEMS, 2014, 62 : 289 - 298