Steady-state operating conditions of very long EHVAC cable lines

被引:24
|
作者
Gatta, F. M. [1 ]
Geri, A. [1 ]
Lauria, S. [1 ]
Maccioni, M. [1 ]
机构
[1] Univ Roma La Sapienza, Dept Astronaut Elect & Energet Engn, I-00184 Rome, Italy
关键词
EHVAC cables; Power transmission; Cable ampacity; Shunt compensation; Voltage and reactive power control; Temporary overvoltages;
D O I
10.1016/j.epsr.2011.03.011
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
In the present paper the authors investigate steady-state capabilities of very long EHVAC underground cable lines, without intermediate compensating stations, installed in meshed networks. Analytical formulas of cable length-loading relationship are presented to this purpose. The study shows that, in optimal operating conditions, most of the ampacity of such long underground cable lines can be exploited for active power transmission. Non-optimal operating envelopes are studied, showing the effect of terminal voltages and line losses on cable utilization and evidencing limited derating under realistic hypotheses. A parametric analysis of loading limits and possible voltage violations along the cable is shown: a simple criterion for optimal utilization of lossy cable lines is also proposed. Line-end shunt compensation requirements for integration of long EHVAC cable lines in transmission networks are then specified. Studies performed for both ideal and real cables and shunt reactors show that active power transmission of 100 km long, 400 kV-50 Hz underground cable lines can attain 90% of their thermal limit, without intermediate compensating stations. Excess reactive power and temporary overvoltages are effectively controlled by line-end compensation around 90%. (C) 2011 Elsevier B.V. All rights reserved.
引用
收藏
页码:1525 / 1533
页数:9
相关论文
共 50 条
  • [31] STEADY-STATE CONFIGURATION OF AN UNDERWATER SUSPENDED BIPOD CABLE SYSTEM
    MARIANO, JJ
    JOURNAL OF HYDRONAUTICS, 1980, 14 (03): : 77 - 82
  • [33] Steady-state conditions of catalytic oxidation of soot
    Zabuga, V.Ya.
    Tsapyuk, G.G.
    Budarin, V.L.
    Eliseeva, A.D.
    Yatsimirskij, V.K.
    Ukrainskij Khimicheskij Zhurnal, 2004, 70 (3-4): : 44 - 46
  • [34] Migration of γδ T cells in steady-state conditions
    Shekhar, Sudhanshu
    Milling, Simon
    Yang, Xi
    VETERINARY IMMUNOLOGY AND IMMUNOPATHOLOGY, 2012, 147 (1-2) : 1 - 5
  • [35] Conditions of existence of steady-state heterogeneous detonation
    Basevich, V.Ya.
    Frolov, S.M.
    Posvyanskij, V.S.
    Khimicheskaya Fizika, 2005, 24 (07): : 58 - 69
  • [36] JUDGMENT OF RECENCY UNDER STEADY-STATE CONDITIONS
    HINRICHS, JV
    BUSCHKE, H
    JOURNAL OF EXPERIMENTAL PSYCHOLOGY, 1968, 78 (4P1): : 574 - &
  • [37] STEREOSELECTIVE DISPOSITION OF (+/-)-SOTALOL AT STEADY-STATE CONDITIONS
    FISET, C
    PHILIPPON, F
    GILBERT, M
    TURGEON, J
    BRITISH JOURNAL OF CLINICAL PHARMACOLOGY, 1993, 36 (01) : 75 - 77
  • [38] ANALYSIS OF CONDITIONS FOR STEADY-STATE RENATURATION OF POLYNUCLEOTIDES
    GAVRILOV, VY
    DYAKONOVA, LP
    MOLECULAR BIOLOGY, 1975, 9 (06) : 723 - 728
  • [39] CONTACT MELTING UNDER STEADY-STATE CONDITIONS
    GETAZHEY.KA
    SAVINTSE.PA
    RUSSIAN METALLURGY-METALLY-USSR, 1971, (01): : 153 - &
  • [40] KINETIC BARRIERS UNDER STEADY-STATE CONDITIONS
    SUDI, J
    BIOCHEMICAL JOURNAL, 1992, 284 : 213 - 219