The Method of Continuous Frequency Emergency Control Considering Transient Short-time Power Shock

被引:0
|
作者
Chang, Haijun [1 ]
Liu, Bosi [2 ]
Huang, Hui
Liang, Wenju [1 ,2 ]
Han, Aoyu [1 ]
Fan, Li [2 ]
机构
[1] Nari Tech Nanjing Control Syst Ltd, Nanjing, Peoples R China
[2] State Grid Corp China, Southwest Branch, Chengdu, Peoples R China
来源
2023 2ND ASIAN CONFERENCE ON FRONTIERS OF POWER AND ENERGY, ACFPE | 2023年
关键词
new energy low voltage ride-through; DC commutation failure; short-time power shock; feedforward-feedback control; chaint;
D O I
10.1109/ACFPE59335.2023.10455731
中图分类号
TP18 [人工智能理论];
学科分类号
081104 ; 0812 ; 0835 ; 1405 ;
摘要
With the large-scale access of UHV direct current and new energy sources, transient short-time power shocks such as low voltage ride-through of new energy sources and DC commutation failure make the frequency evolution of power grid highly uncertain. The existing frequency emergency control mode strategy based on feedforward control law is difficult to formulate, and the one-time total active power control mode adopted is easy to induce chain high-frequency risk. Firstly, based on the feedforward control theory, the existing frequency emergency control principle and key influencing factors were expounded. Secondly, the influence of transient short-time power shock on the existing frequency emergency control is analyzed. Finally, the method of continuous frequency emergency control was developed by fusing fault event trigger and response trajectory drive. The effectiveness of the proposed control method is verified based on a typical case of the actual power grid, which solves the problem that the existing frequency emergency control is difficult to deal with transient short-time power impact.
引用
收藏
页码:673 / 680
页数:8
相关论文
共 50 条
  • [21] Freezing of water under intense short-time shock
    N. A. Gorbushin
    Yu. V. Petrov
    Doklady Physics, 2014, 59 : 283 - 285
  • [22] Freezing of water under intense short-time shock
    Gorbushin, N. A.
    Petrov, Yu V.
    DOKLADY PHYSICS, 2014, 59 (06) : 283 - 285
  • [23] THE SHORT-TIME TRANSIENT OF DIFFUSION OUTSIDE A CONDUCTING BODY
    PHILLIPS, CG
    JANSONS, KM
    PROCEEDINGS OF THE ROYAL SOCIETY OF LONDON SERIES A-MATHEMATICAL PHYSICAL AND ENGINEERING SCIENCES, 1990, 428 (1875): : 431 - 449
  • [24] An optimization method for spinning reserve in primary frequency control considering transient frequency deviation
    Liu, Mingsong
    Sun, Huadong
    He, Jian
    Dianwang Jishu/Power System Technology, 2011, 35 (08): : 129 - 133
  • [25] 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
  • [26] SHORT-TIME AUTOCORRELATION FUNCTIONS AND POWER SPECTRA
    FANO, RM
    JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, 1950, 22 (05): : 546 - 550
  • [27] SHORT-TIME BREADMAKING SYSTEMS - A CONTINUOUS MIX SYSTEM
    MANINGAT, JI
    WU, JY
    HOSENEY, RC
    PONTE, JG
    JOURNAL OF FOOD SCIENCE, 1988, 53 (02) : 546 - &
  • [28] SHORT-TIME SPECTRA AND TIME-FREQUENCY ENERGY DISTRIBUTIONS
    ACKROYD, MH
    JOURNAL OF THE ACOUSTICAL SOCIETY OF AMERICA, 1971, 50 (05): : 1229 - &
  • [29] Frequency Spectrum Analysis Method for Short-time and Frequency Conversion Signals Based on Simulation EMI Receiver
    Zhang, Xiangming
    Zhao, Zhihua
    Guo, Fei
    Meng, Jin
    Li, Wenlu
    Hu, Anqi
    2010 ASIA-PACIFIC INTERNATIONAL SYMPOSIUM ON ELECTROMAGNETIC COMPATIBILITY & TECHNICAL EXHIBITION ON EMC RF/MICROWAVE MEASUREMENTS & INSTRUMENTATION, 2010, : 1606 - 1609
  • [30] Using Short-Time Storage Potentials of Run-of-River Hydropower for Frequency Control
    Hase, Bastian
    Seidel, Christian
    PROCEEDINGS OF THE 14TH INTERNATIONAL RENEWABLE ENERGY STORAGE CONFERENCE 2020 (IRES 2020), 2021, 6 : 177 - 185