Fault Current Limiter Using Transformer and Modular Device of YBCO Coated Conductor

Applied Superconductivity, IEEE Transactions(2013)

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摘要
In this work, we report on the evaluation of a superconducting fault current limiter (SFCL). It is consisted of a modular superconducting device combined with a short-circuited transformer with a primary copper winding connected in series to the power line and the secondary side short-circuited by the superconducting device. The basic idea is adding a magnetic component to contribute to the current limitation by the impedance reflected to the line after transition of the superconducting device. The evaluation tests were performed with a prospective current up to 2 kA, with the short-circuited transformer of 2.5 kVA, 220 V/660 V connected to a test facility of 100 kVA power capacity. The resistive SFCL using a modular superconducting device was tested without degradation for a prospective fault current of 1.8 kA, achieving the limiting factor 2.78; the voltage achieved 282 V corresponding to an electric field of 11 V/m. The test performed with the combined SFCL ( superconducting device + transformer) using series and toroidal transformers showed current limiting factor of 3.1 and 2 times, respectively. The test results of the combined SFCL with short-circuited transformer showed undesirable influence of the transformer impedance, resulting in reduction of the fault current level.
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copper,superconducting device testing,superconducting fault current limiters,superconducting transformers,yttrium compounds,ybco coated conductor,combined sfcl,current 1.8 ka,current limitation,fault current degradation,fault current level reduction,magnetic component,modular superconducting device,primary copper winding,prospective current,resistive sfcl,secondary side short-circuit,short-circuited transformer,superconducting fault current limiter,transformer impedance,voltage 282 v,current limiting ratio,step up transformer,current limiting,limiting,resistance,windings,electric fields
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