DocumentCode :
2788050
Title :
High temperature superconducting opening switches
Author :
Baker, M. ; Curry, M.
Author_Institution :
Texas Tech. Univ., Lubbock, TX, USA
fYear :
2000
fDate :
26-29 June 2000
Firstpage :
81
Lastpage :
84
Abstract :
A continuing challenge in power systems and pulsed power applications is the development of reliable, high current opening switches. The opening switch is a particularly critical component in inductive energy storage systems. The high temperature superconductor materials have the unique property of becoming superconducting at or near liquid nitrogen temperatures. By manipulating the current density and the external magnetic field of these materials, they can be made to switch from a zero resistance state to a normal (resistive) state. Because they have zero resistance in the superconducting state, they have zero losses when closed, and do not load the system. In the open state, a resistance of several milliohms may be present. This is appropriate for switching currents into certain low resistance loads. This paper presents a description of possible applications of these switches in inductive energy storage systems, as well as data on the performance of various switch configurations. Maximum currents switched are approximately 100 amps, with potential scaling up to 3000 amps or higher. The switches are triggered using either a self generated magnetic field or an external field of up to 3.5 Tesla.
Keywords :
high-temperature superconductors; inductive energy storage; magnetic fields; pulsed power switches; superconducting switches; 100 A; 3.5 T; 3000 A; current density; external magnetic field; high temperature superconductor materials; high-temperature superconducting opening switches; inductive energy storage systems; power systems; pulsed power applications; self generated magnetic field; superconducting state; Energy storage; High temperature superconductors; Magnetic fields; Magnetic materials; Magnetic switching; Nitrogen; Power system reliability; Pulse power systems; Superconducting materials; Switches;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Modulator Symposium, 2000. Conference Record of the 2000 Twenty-Fourth International
Conference_Location :
Norfolk, VA, USA
ISSN :
1076-8467
Print_ISBN :
0-7803-5826-0
Type :
conf
DOI :
10.1109/MODSYM.2000.896170
Filename :
896170
Link To Document :
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