Development of algorithm for determination of location of cable line damage using its amplitude-phase coordinate characteristics

A. V. Logunov, Y. Shlyk
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Abstract

RELEVANCE. The task of prompt and accurate determination of the fault location in cable transmission lines is one of the key in the process of ensuring a reliable and uninterrupted supply of electricity to consumers. The development of a new algorithm for solving this problem, which will minimize the time and resources spent on finding damage, is an urgent area of modern research. THE PURPOSE. Consider the main shortcomings and limitations of the existing methods of determining fault location to cable lines. Develop an algorithm for the determining fault location to cable line based on the theory of long lines using the original amplitude-phase coordinate characteristics. Implement an algorithm for obtaining theoretical characteristics of the dependence of the input current parameters on the line fault coordinate using a specific numerical example. METHODS. When solving the tasks set, the methods of the theory of long lines and the classical theory of electrical circuits were used, implemented by means of the Wolfram Mathematica software package. RESULTS. The article describes the relevance of the topic, considers the main shortcomings of the existing methods of determining fault location to cable lines. An algorithm for determining the fault location for a single-phase cable line has been developed and implemented on a specific numerical example, based on the joint use of a special type of duplicated coordinate-dependent (ACC) and (FCC) characteristics calculated using the Wolfram Mathematica software package. The corresponding graphic constructions are given and a variant of the practical implementation of the proposed algorithm is described. CONCLUSION. According to the results of theoretical calculations, the proposed algorithm for determining the location of damage to a single-phase cable power transmission line allows, with a given accuracy, to determine the coordinate of damage for cases of breakage and short circuit in the entire range of line length. The obtained theoretical calculations need appropriate experimental testing in the next stage of research.
基于幅相坐标特征确定电缆线路损伤位置的算法研究
的相关性。及时、准确地确定电缆输电线路的故障位置是确保向用户可靠、不间断供电的关键之一。开发一种新的算法来解决这一问题,从而最大限度地减少寻找损伤所花费的时间和资源,是现代研究的一个紧迫领域。的目的。考虑现有电缆线路故障定位方法的主要缺点和局限性。基于长线理论,利用原始幅相坐标特征,提出了一种电缆线路故障定位算法。通过具体的数值算例,实现了一种获取输入电流参数对线路故障坐标依赖关系的理论特征的算法。方法。在求解任务集时,采用了长线理论和经典电路理论的方法,并借助Wolfram Mathematica软件包实现。结果。本文阐述了本课题的相关性,指出了现有电缆线路故障定位方法的主要不足。基于Wolfram Mathematica软件包计算的一种特殊类型的重复坐标依赖(ACC)和重复坐标依赖(FCC)特征,开发了一种确定单相电缆线路故障定位的算法,并通过具体的数值算例实现了该算法。给出了相应的图形结构,并描述了所提出算法的实际实现的一个变体。结论。根据理论计算结果,本文提出的单相电缆输电线路损伤位置确定算法可以在给定的精度下,确定整个线路长度范围内的断线和短路情况下的损伤坐标。得到的理论计算结果需要在下一阶段的研究中进行适当的实验验证。
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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