DocumentCode :
1689780
Title :
Fault analysis of HTS power transmission cables
Author :
Bin Shu ; Fang Min Wang ; Zhao Yan Liu ; Jiang Tao Li ; Zhi Jie Zhao ; Jian Hao Li ; Zheng Liang
Author_Institution :
Beijing Power Eco-Tech Res. Inst., Beijing, China
fYear :
2013
Firstpage :
543
Lastpage :
545
Abstract :
It is very attractive to replace traditional power cables into high-temperature superconducting (HTS) cables for electricity transmission to metropolitan areas with the advantages of high capacity and low losses. However, these advantages only present when the conductors are kept in certain low temperature. When over-voltage or over-current occur, the HTS cable may quench and the resistivity of the conductor will increase rapidly which will result in the reduction of transmission capacity, increase of the power loss or even electrical insulation breakdown. Therefore, it is necessary to investigate the level of over-current and overvoltage. In this paper, an accurate model for a 1-km-long 110 kV HTS cable is presented and a simple simulation model for power system containing HTS cable is built up using EMTP-ATP program. Single-phase short-circuit fault and electrical insulation breakdown fault are considered to investigate the over-voltage and over-current level of HTS cable. The simulation results may provide instructive guide for the protection systems for HTS cables.
Keywords :
high-temperature superconductors; overcurrent protection; overvoltage protection; power cables; power transmission faults; power transmission lines; superconducting cables; HTS power transmission cables; distance 1 km; electrical insulation breakdown fault; electricity transmission; fault analysis; high temperature superconducting cables; metropolitan areas; overcurrent protection; overvoltage protection; power loss; single phase short circuit fault; transmission capacity; voltage 110 kV; Cable insulation; Cable shielding; Conductors; High-temperature superconductors; Power cables; Resistance; Superconducting cables; EMTP-ATP; HTS cables; overvoltage;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Applied Superconductivity and Electromagnetic Devices (ASEMD), 2013 IEEE International Conference on
Conference_Location :
Beijing
Print_ISBN :
978-1-4799-0068-8
Type :
conf
DOI :
10.1109/ASEMD.2013.6780844
Filename :
6780844
Link To Document :
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