6 (10) kV电网故障定位仿真

I. Koshkin, V. Kushnir, O. Benyukh
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引用次数: 3

摘要

本文考虑了6 (10)kV配电网应急运行的计算机模型的建立,并考虑了电网具体参数的选择和配置。本工作的目的是分析6 (10)kV电网计算机模型中可能发生的突发事件,并根据应急模式的参数确定事故发生地点。本文概述了利用各种方法进行故障定位的原则,包括考虑电网运行参数和应急运行参数。规定了电路纵向和横向部分的等效电路参数,负载和电源的参数。在模拟时间内消耗和生成的参数保持不变。作者分析了以下几种报警模式:额定负荷电力用户模式;-紧急模式单相金属接地故障(SGF)对地;SGF应急模式通过事故现场较大的瞬态电阻;电网相邻两相事故双地故障的应急方式事故中两地市电一相双地故障的应急方式。通过对示波图的分析,提出了事故登记参数和与主干线的互连距离的基本措施。提出了进一步改进利用电网波动参数的数学装置的措施。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simulation of 6 (10) kV electrical networks for fault location
The article considers a computer model development to simulate emergency operation in distribution networks 6 (10) kV with the selection and configuration of electrical network specific parameters. The objectives of the work is to analyze possible emergencies in the networks 6 (10) kV power grid computer model and to determine the site of the accident at the power transmission line with the account of the parameters the emergency mode. The paper outlines the principles of fault location by various methods, including taking into account the operating parameters of the electrical network and the emergency operation parameters. The equivalent circuit parameters in the longitudinal and transverse parts of the circuit, the parameters of the load and the power source are specified. The parameters of consumption and generation over the simulation time remain unchanged. The authors provide the analysis of the following alarm modes: rated load power user mode;- emergency mode single-phase metallic ground fault (SGF) to the ground; SGF emergency mode through the large transient resistance at the accident site; emergency mode of double ground fault in an accident on the two adjacent phases of the electrical network; emergency mode of the double ground fault in an accident at one phase in two places mains. The analysis of the oscillograms, the basic measures for accident registration parameters and interconnection with the distance to the point of damage to the mains. Measures for further improvement of the mathematical apparatus using wave parameters of the electrical network are outlined.
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