Real-Time Prediction and Control of Transient Stability Using Transient Energy Function

被引:134
|
作者
Bhui, Pratyasa [1 ]
Senroy, Nilanjan [1 ]
机构
[1] Indian Inst Technol Delhi, Dept Elect Engn, New Delhi 110016, India
关键词
Controlling unstable equilibrium point; transient stability; transient energy function; transient stability control; generation shedding; wide area control; MULTIMACHINE POWER-SYSTEM; IDENTIFICATION;
D O I
10.1109/TPWRS.2016.2564444
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
Real-time prediction of transient stability after a fault can potentially prevent occurrence of grid blackouts. In this paper, the measurement data obtained from phasor measurement unit (PMU) located at generator buses are used to compute the transient stability margin after a fault has occurred. For evaluating various control actions to be taken to stabilize severely disturbed and unstable generators, the stability margin is estimated using the transient energy function (TEF) technique. A look-up table of various modes of disturbance (MOD) is built offline for different fault locations and post fault topology. Following an actual fault, the most probable MODs are ranked by matching the "normalized" kinetic energywith the look-up table. The correct MOD is then chosen based on the lowest normalized potential energy margin and the Controlling Unstable Equilibrium Point (CUEP) is calculated. This technique overcomes previously reported difficulties in finding the CUEP in real-time applications. With knowledge of prefault operating condition obtained from SCADA and the information of the tripped line by analyzing the PMU data, the first swing transient stability margin is computed. The amount of control action needed is subsequently calculated. The proposed method has been tested on the IEEE 39 Bus Test System.
引用
收藏
页码:923 / 934
页数:12
相关论文
共 50 条
  • [1] A method for real-time transient stability emergency control
    Zhang, Y
    Wehenkel, L
    Pavella, M
    CONTROL OF POWER SYSTEMS AND POWER PLANTS 1997 (CPSPP'97), 1998, : 633 - 638
  • [2] DECISION TREES FOR REAL-TIME TRANSIENT STABILITY PREDICTION
    ROVNYAK, S
    KRETSINGER, S
    THORP, J
    BROWN, D
    IEEE TRANSACTIONS ON POWER SYSTEMS, 1994, 9 (03) : 1417 - 1426
  • [3] Real-time prediction and control for transient stability of multi-machine power system
    Le, QS
    Li, GX
    Chen, YP
    POWERCON '98: 1998 INTERNATIONAL CONFERENCE ON POWER SYSTEM TECHNOLOGY - PROCEEDINGS, VOLS 1 AND 2, 1998, : 1361 - 1363
  • [4] Real-time transient stability detection in the power system with high penetration of DFIG-based wind farms using transient energy function
    Shabani, Hamid Reza
    Kalantar, Mohsen
    INTERNATIONAL JOURNAL OF ELECTRICAL POWER & ENERGY SYSTEMS, 2021, 133
  • [5] Hybrid Energy Function based Real-Time Optimal Wide-Area Transient Stability Controller For Power System Stability
    Yousefian, Reza
    Sahami, Amirreza
    Kamalasadan, Sukumar
    2015 51ST IEEE INDUSTRY APPLICATIONS SOCIETY ANNUAL MEETING, 2015,
  • [6] A New Methodology for the Purpose of Real-time Local Control of Transient Stability
    Miah, Abdul Malek
    2014 IEEE PES T&D CONFERENCE AND EXPOSITION, 2014,
  • [7] The study on real-time transient stability emergency control in power system
    Li, YQ
    Teng, L
    Liu, WS
    Liu, JF
    IEEE CCEC 2002: CANADIAN CONFERENCE ON ELECTRCIAL AND COMPUTER ENGINEERING, VOLS 1-3, CONFERENCE PROCEEDINGS, 2002, : 138 - 143
  • [8] Comprehensive approach for prediction and assessment of power system transient stability in real-time
    Echeverria, Diego E.
    Rueda, Jose L.
    Cepeda, Jaime C.
    Colome, Delia G.
    Erlich, Istvan
    2013 4TH IEEE/PES INNOVATIVE SMART GRID TECHNOLOGIES EUROPE (ISGT EUROPE), 2013,
  • [9] Real-Time Localized Control of Transient Stability by the Localized Transient Stability (LTS) Method with Static Var Compensator (SVC)
    Miah, Abdul Malek
    2018 INTERNATIONAL CONFERENCE ON SMART GRID AND CLEAN ENERGY TECHNOLOGIES (ICSGCE), 2018, : 212 - 217
  • [10] Transient stability limit conditions analysis using a corrected transient energy function approach
    Fang, DZ
    Chung, TS
    Zhang, Y
    Song, WN
    IEEE TRANSACTIONS ON POWER SYSTEMS, 2000, 15 (02) : 804 - 810