Mathematical Models of Short-Circuit and Break Modes in Electric Networks with Multi-Circuitoverhead Lines

Valery G. Goldshteyn, A. S. Vedernikov, Nikolay V. Tanaev
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引用次数: 3

Abstract

A mathematical model of shortcircuit and break (SCB) modes and their combinations in electric networks (EN) with multi-circuit overhead lines (MCOL), the circuits of which have different rated voltages, is proposed. Considering their specifics, the method of calculating the SCB modes in phase coordinates based on superimposing the Actual Emergency Modes with Pre-Emergency Modes (AEM and PEM) is formulated. The article gives a procedure for considering the boundary conditions of fault different types and their combinations in determining the parameters of their modes using additional sources. The technique is focused on multivariate calculations of the totality of faults in ENs with MCOL, i.e. when moving the fault point along their branches and nodes and combinations of these faults with breaks and disconnections of three-phase branches and individual phases.
多路架空线电网短路和分断模式的数学模型
提出了具有不同额定电压的多回路架空线电网中短路和分断模式及其组合的数学模型。考虑其特殊性,提出了基于实际应急模态与预应急模态(AEM和PEM)叠加的SCB模态相坐标计算方法。本文给出了利用附加源确定故障模态参数时考虑不同类型故障及其组合的边界条件的方法。该技术的重点是基于MCOL的en故障总数的多元计算,即当故障点沿着其分支和节点移动时,以及这些故障与三相分支和单个相的断开和断开的组合。
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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