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Test of YBCO thin films based fault current limiters with a newly designed meander

机译:使用新设计的曲折测试基于YBCO薄膜的故障电流限制器

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摘要

To facilitate the up scaling of thin film based fault current limiters (FCL), a complete control of the localization of the dissipated power is needed. This control can be achieved by a new design where constrictions, which are regularly located along the YBCO/Au meander, have the aim of localizing and homogenizing this dissipated power at the beginning of a short circuit. To minimize the initial power peak, the resistivity of the constrictions has to be as small as possible whereas the resistivity of the connecting paths should be increased in order to lower the long-term power. We have tested these expected improvements on 5 kW (340 V, 16 A) FCL, on 2'' wafers, in AC conditions. The observed behavior of the FCL during short circuits, initiated at fault angles, confirm that the dissipated power is minimized and distributed, in a controlled way, along the meander. Finally we present measurements of the self-restoring time of the FCL and test on a 10 kW FCL made of two wafers connected in parallel.
机译:为了促进基于薄膜的故障电流限制器(FCL)的放大,需要对耗散功率的位置进行完全控制。可以通过一种新设计来实现这种控制,在这种设计中,通常沿YBCO / Au曲折排列的收缩部的目的是在短路开始时将这种耗散的功率定位并均匀化。为了使初始功率峰值最小化,缩颈的电阻率必须尽可能小,而连接路径的电阻率应增加以降低长期功率。我们已经在交流条件下在2英寸晶圆的5 kW(340 V,16 A)FCL上测试了这些预期的改进。 FCL在短路期间观察到的故障状态(以故障角度开始)表明,耗散功率已最小化并以受控方式沿着曲折分布。最后,我们介绍了FCL自恢复时间的测量结果,并在10 kW FCL上进行了测试,该FCL由并联连接的两个晶片制成。

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