Current in Secondary Cable Shielding Coupling to Secondary Ports in Substation

被引:0
|
作者
Liu W. [1 ]
Zhao J. [2 ]
Cai Y. [1 ]
Ge S. [1 ]
Zhang X. [3 ]
Liu H. [3 ]
机构
[1] State Key Laboratory of Control and Simulation of Power Systems and Generation, Department of Electrical Engineering, Tsinghua University, Beijing
[2] State Key Laboratory of Power Grid Environmental Protection, China Electric Power Research Institute, Wuhan
[3] China Electric Power Research Institute, Beijing
来源
关键词
Coupling model; Electromagnetic transient; Secondary cable; Secondary port; Substation;
D O I
10.13336/j.1003-6520.hve.20181031029
中图分类号
学科分类号
摘要
Electromagnetic transient will induce a relative potential difference between earthing conductors and current in secondary cable shielding in substation. The current can couple to the secondary ports through control cables, which may cause operation failure even damage of secondary equipment. Consequently, we obtained the characteristics of the voltage and current coupled to the secondary ports through the experimental simulation, and analyzed the coupling mechanism. First, we employed established test platforms for simulating switching, short circuit and lightning transients to carry out numeral experiments. The experimental results indicate that the voltage waveforms at both terminal ports have the same profile but the opposite polarity, under the condition of the same component at the terminals for all kinds of transients. Then, only common-mode voltage with no differential-mode voltage exists for the twin core cable. Based on the results, an equivalent circuit of secondary cable was proposed. It is revealed that the current in the cable shielding layer will induce the resistance voltage drop, i.e. the voltage at the secondary port. The results also show that the coupling coefficient decreases with the increase of the frequency, and the coupling impedance, which is independent of frequency, is close to the resistance of the cable shielding layer. All these results will be helpful to further research on the electromagnetic protection of the secondary ports. © 2018, High Voltage Engineering Editorial Department of CEPRI. All right reserved.
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页码:3672 / 3680
页数:8
相关论文
共 21 条
  • [11] Chen H., Hazards of large current single phase short circuit fault to secondary equipment in 110 kV power system, Application of Electrical Engineering, 1, pp. 34-38, (1991)
  • [12] Sowa A., Wiater J., Lightning transients in control lines at the large urban area HV substation, 2004 International Symposium on Electromagnetic Compatibility, pp. 448-451, (2004)
  • [13] Li H., Li W., Wu X., Et al., Simulation of secondary equipment lightning protection in EHV substation based on ATP, Electric Power Automation Equipment, 29, 5, pp. 142-144, (2009)
  • [14] Liu H., Liu X., Lei L., Et al., Calculation model of transient enclosure voltage in substation coupling to intelligent device, Electric Safety, 35, 1, pp. 68-71, (2016)
  • [15] Liu X., Cui X., Wu H., Et al., Simulation experimental study on disturbance voltage of the sensor and the intelligent electronic device due to gas insulated substation switching operations, Smart Grid, 3, 1, pp. 67-73, (2015)
  • [16] Liu X., Cui X., Wu H., Et al., Measurement and analysis on electromagnetic disturbance of intelligent electronic device current transformer ports due to switching operations in a 500 kV gas insulated substation, High Voltage Engineering, 41, 5, pp. 1709-1718, (2015)
  • [17] Qi L., Cui X., Prediction of electromagnetic interference on the shielded cable due to the switching operation in substation, Proceedings of the CSEE, 27, 9, pp. 46-51, (2007)
  • [18] Lu B., Shi Y., Application of lumped equivalent source in electromagnetic interference of multi-conductor cables, Proceedings of the CSEE, 36, 15, pp. 4291-4298, (2016)
  • [19] Hu R., Cui X., Chen W., Et al., Experimental research on the characteristics of transient enclosure voltage in ultra high voltage gas insulated switchgear, Proceedings of the CSEE, 34, 29, pp. 5244-5257, (2014)
  • [20] Hu R., Cui X., Zhang W.D., Et al., Transient enclosure voltage (TEV) measurement system of UHV GIS and TEV statistical characterization, 2012 International Symposium on Electromagnetic Compatibility (EMC EUROPE), pp. 1-6, (2012)