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Critical Current Equalization via Neutral Lines in a Transformer-Type SFCL

机译:变压器型SFCL中通过中性线实现的临界电流均衡

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摘要

In order to increase the capacity of the superconducting fault current limiter (SFCL), serial and parallel connections of the superconducting units are necessary. The resistive-type SFCL with serial and parallel connections has the unbalance of power burden because of the difference of critical current between the superconducting units. The transformer-type SFCL using a neutral line consists of a primary coil and several secondary coils with the superconducting units. Because the neutral line is connected with the secondary coils in the SFCL, it induces the simultaneous quench from compulsive current distribution in the superconducting units. The simultaneous quench enables the power burden between the superconducting units to be distributed equally. The neutral line also induces the equal voltage distribution between the superconducting units due to the equal turn''s ratio of the secondary coil. In conclusion, the increase of the capacity in the transformer-type SFCL could be achieved easily through the application of the neutral line between the secondary coils and the superconducting units.
机译:为了增加超导故障电流限制器(SFCL)的容量,超导单元的串联和并联连接是必需的。由于超导单元之间的临界电流不同,具有串联和并联连接的电阻型SFCL的功率负担不平衡。使用中性线的变压器型SFCL由一个初级线圈和几个带有超导单元的次级线圈组成。因为中性线与SFCL中的次级线圈连接,所以它会导致超导单元中强制性电流分布同时熄灭。同时淬火使得超导单元之间的功率负担得以平均分配。由于次级线圈的匝数比相等,中性线还会在超导单元之间感应出相等的电压分布。总之,通过在次级线圈和超导单元之间应用中性线,可以轻松实现变压器型SFCL容量的增加。

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