Gas-Insulated High Temperature Superconducting Coaxial Dipole for MVDC Power Systems

P. Cheetham, Chanyeop Park, S. Satyanarayana, C. Kim, L. Graber, S. Pamidi
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引用次数: 1

Abstract

The concept of gas-insulated high temperature superconducting (HTS) coaxial dipole for power distribution systems in medium voltage direct current (MVDC) architectures is explored. Finite element analysis of electromagnetic characteristics of the preliminary designs of the HTS coaxial dipole show promise in terms of its ability to eliminate electromagnetic interference with other devices by eliminating the magnetic field leakage external to the dipole. The coaxial dipole allows effective cancelation of self-magnetic field of the individual poles carrying several kA current thus allowing higher current carrying capacity of the cable. Design options for arranging the HTS conductors and insulator spacers is presented. Outstanding challenges to realize practical coaxial dipole configurations of HTS power distribution systems are discussed.
MVDC电力系统用气体绝缘高温超导同轴偶极子
探讨了用于中压直流(MVDC)结构配电系统的气体绝缘高温超导(HTS)同轴偶极子的概念。对高温超导同轴偶极子初步设计的电磁特性进行了有限元分析,结果表明,通过消除偶极子外部的磁场泄漏,可以消除对其他器件的电磁干扰。同轴偶极子允许有效地抵消携带数kA电流的各个极点的自磁场,从而允许电缆的更高载流能力。提出了高温超导导体和绝缘子间隔的布置方案。讨论了实现高温超导配电系统实际同轴偶极子配置的突出挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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