A LOW-ORDER SYSTEM FREQUENCY-RESPONSE MODEL

被引:646
|
作者
ANDERSON, PM
MIRHEYDAR, M
机构
[1] Power Math Associates, Inc., California
关键词
damping; Frequency; frequency rate of change; frequency response; governor droop; inertia constant; islanded operation; load-frequency behavior; regulation; reheat time constant; uniform frequency;
D O I
10.1109/59.65898
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 tutorial paper presents the derivation of a simple, low order System Frequency Response (SFR) model that can be used for estimating the frequency behavior of a large power system, or islanded portion thereof, to sudden load disturbances. The SFR model is a simplification of other models used for this purpose, but it is believed to include the essential system dynamics. The SFR model is based on neglecting nonlinearities and all but the largest time constants in the equations of the generating units of the power system, with the added assumption that the generation is dominated by reheat steam turbine generators. This means that the generating unit inertia and reheat time constants predominate the system average frequency response. Moreover, since only two time constants predominate, the resulting system response can be computed in closed form, thereby providing a simple, but fairly accurate, method of estimating the essential characteristics of the system frequency response. © 1990 IEEE
引用
收藏
页码:720 / 729
页数:10
相关论文
共 50 条
  • [1] Closed-Form Solutions for a Low-Order System Fast Frequency Response Model
    Susanto, Julius
    Fereidouni, Alireza
    Mancarella, Pierluigi
    Sharafi, Dean
    2021 IEEE MADRID POWERTECH, 2021,
  • [2] Droop Coefficient Modification Method for DFIG Based on Low-order System Frequency Response Model
    Quan R.
    Pan W.
    Liu M.
    Pan, Wenxia (pwxhh@hhu.edu.cn), 2018, Automation of Electric Power Systems Press (42): : 68 - 73and90
  • [3] RETRACTED: Low-order frequency response model in the application of frequency control (Retracted Article)
    Gao, Zheng
    ADVANCES IN ENVIRONMENTAL SCIENCE AND ENGINEERING, PTS 1-6, 2012, 518-523 : 3820 - 3825
  • [4] FREQUENCY-RESPONSE OF TOTAL RESPIRATORY MECHANICAL SYSTEM INTERPRETED WITH MODEL OF 4TH ORDER
    PESLIN, R
    PAPON, J
    RICHALET, J
    DUVIVIER, C
    JOURNAL DE PHYSIOLOGIE, 1972, 65 (02): : A283 - &
  • [5] A Low-Order System Frequency Response Model for DFIG Distributed Wind Power Generation Systems Based on Small Signal Analysis
    Quan, Rui
    Pan, Wenxia
    ENERGIES, 2017, 10 (05):
  • [6] Dynamical system analysis of a low-order tropical cyclone model
    Schoenemann, Daria
    Frisius, Thomas
    TELLUS SERIES A-DYNAMIC METEOROLOGY AND OCEANOGRAPHY, 2012, 64
  • [7] SELECTION OF THE DOMINANT POLES OF A SYSTEM TO BE RETAINED IN A LOW-ORDER MODEL
    ELRAZAZ, Z
    SINHA, NK
    IEEE TRANSACTIONS ON AUTOMATIC CONTROL, 1979, 24 (05) : 792 - 793
  • [8] Low-order model for the simulation of a building and its heating system
    School of Engineering, University of Northumbria, Newcastle upon Tyne NE1 8ST, United Kingdom
    不详
    Building Services Engineering Research and Technology, 2000, 21 (03) : 199 - 208
  • [9] DETERMINATION OF A LOW-ORDER SYSTEM MODEL USING AN ADAPTIVE TECHNIQUE
    JIANG, J
    ETTER, DM
    IEEE INTERNATIONAL CONFERENCE ON SYSTEMS ENGINEERING ///, 1989, : 273 - 276
  • [10] Efficient frequency response computation for low-order modelling of spatially distributed systems
    Dellar, O. J.
    Jones, B. Li
    INTERNATIONAL JOURNAL OF CONTROL, 2020, 93 (03) : 366 - 376