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A novel real-time simulation method of the utility power network including the HTS power cable

机译:包含HTS电力电缆的新型公用电网实时仿真方法

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摘要

High temperature superconducting (HTS) power cable, characterized by its large transmission capacity in compact dimension, small transmission loss, no leakage of electro-magnetic field to the outside of the cable and small impedance. HTS technology can be useful to overcome this program. Recently, according to the advanced HTS technology, the power application is being researched well. However, several kinds of simulation, which analyze the transient phenomena of HTS power cable itself, are basically required before installation according as the impedance level of HTS power cable is dramatically changed in case of quench at fault condition. In this paper, the authors propose RTDS simulation method, which puts a real miniaturized HTS power cable into the imaginary utility power grid system simulated in RTDS. For the simulation analysis, the miniaturized HTS power cable was actually manufactured, and the transient phenomenon of the miniaturized HTS power cable model core was analyzed in the simulated utility power grid. (C) 2007 Elsevier B.V. All rights reserved.
机译:高温超导(HTS)电力电缆,其特点是尺寸小,传输容量大,传输损耗小,电磁场不泄漏到电缆外部,阻抗小。 HTS技术对于克服该程序很有用。最近,根据先进的HTS技术,电源应用正在得到很好的研究。但是,由于故障情况下发生淬火时,HTS电力电缆的阻抗水平会急剧变化,因此在安装之前,基本上需要进行多种模拟分析,以分析HTS电力电缆本身的瞬态现象。在本文中,作者提出了RTDS仿真方法,该方法将真正的小型HTS电力电缆放入RTDS仿真的虚构电网系统中。为了进行仿真分析,实际制造了小型HTS电力电缆,并在模拟的公用电网中分析了小型HTS电力电缆模型芯的瞬态现象。 (C)2007 Elsevier B.V.保留所有权利。

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