超导变压器的长线模式分析

Berzan Vladimir, Patsyuk Vladimir, Ribacova Galina, Maevsky Dmitry, Bojko Andriy, Maevskaya Elena
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引用次数: 0

摘要

高温超导材料的出现为提高电力系统的运行效率开辟了新的可能性。它们的实施可以导致输配电系统的运行方式发生质的变化,这在有损耗的电路中是观察不到的。本文的目的是建立包括分布参数电力线和超导电力变压器在内的电路的数学模型,以研究长线路,主要是非平稳模式下的模式特征。在构建等效电路和数学模型时,采用RLC型串行电路作为基本元件。数学模型的参数用相对单位制表示。在求解描述所考虑的电路过程的积分-微分方程组时,使用有限差分法。当几个RLC类型的负载通过降压变压器馈电时,以及几个发电源(来自低压网络的分布式发电源)连接到变压器时,电路中的数学模型和模式被考虑。考虑了供电线路和变压器理想状态下的空转和负载模式(模拟超导效应)。在波形模式存在的情况下,能量存储在变压器和线路中的可能性被显示出来,以及通过变压器向负载传输功率,甚至对于从直流电源供应电路的情况也是如此。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Long Line Mode Analysis with Superconducting Transformer
The advent of high-temperature superconducting materials opens up a new possibilities for increasing the efficiency of the functioning of electric power systems. Their implementation can lead to qualitative changes in the modes of operation of transmission and distribution systems that are not observed in electrical circuits with losses. The aim of this work is to develop a mathematical model of the electric circuit, which includes a power line with distributed parameters and a superconducting power transformer in order to study the mode features in the long line, mainly in non-stationary mode. When constructing the equivalent circuit and the mathematical model, the serial circuit of the RLC type is used as the basic element. The parameters of the mathematical model are presented in a system of relative units. In solving the system of integro-differential equations describing the process in the circuit under consideration, the finite difference method is used. Mathematical models and modes in the circuit are considered in the case when several loads of the RLC type feeding through a step-down transformer and in the case when several sources of electric energy generation (distributed generation sources from a low voltage network) are connected to the transformer. Idling and load modes are considered for the case when the supply line and the transformer are presented as ideal (modeling the effect of superconductivity). The possibility of energy storage in the transformer and in the line under the existence of a wave mode is shown, as well as the transfer of power to the load through the transformer, even for the case of supplying the circuit from a direct current source.
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