Transmission line fault analysis using actuating relays and Atmega 328P controller

A. Sudhakar, G. Nagasai, Modala Prudhvi Sagar, Maya Vamshi, Vasala Nikhil, Bodapati Venkata Rajanna
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引用次数: 0

Abstract

Since transmission lines account for 80–86% of power system problems, protecting transmission lines is a critical concern. This research proposes a method to identify and categorize various short circuit defects on transmission lines. Various operational and fault circumstances on the transmission of high voltage lines, including L-L fault, single phase to earth fault, and double line fault, double line Three fault scenarios triple line fault, triple line to ground fault, and triple line are simulated using MATLAB software. These flaws damage the linked devices to the power grid. The main motto of this work is to analyze various kinds of faults and also to detect the type of the fault in transmission line. In order to simulate and evaluate the various faults, a 100 km transmission line model was created. A sim power system block library had a fault block, and the harmonic content of the various faults was studied using the FFT tool, the effect of faults was observed. Based on the analysis, a hardware model is designed to identify the faults in transmission line using actuating relays and Atmega 328P microcontroller and display the fault type and parameters like fault impedance, and distance at which fault occurred.
使用致动继电器和atmega328p控制器进行传输线故障分析
由于输电线路占电力系统问题的80-86%,因此保护输电线路是一个至关重要的问题。本研究提出了一种对输电线路上各种短路缺陷进行识别和分类的方法。利用MATLAB软件对高压线路输电的各种运行和故障情况,包括L-L故障、单相到地故障、双线故障、双线故障、三线故障、三线故障、三线故障三种故障场景进行仿真。这些缺陷会损坏与电网相连的设备。这项工作的主要宗旨是对输电线路的各种故障进行分析,并对线路的故障类型进行检测。为了模拟和评估各种故障,建立了100公里传输线模型。一个sim电力系统块库具有一个故障块,利用FFT工具研究了各种故障的谐波含量,观察了故障的影响。在此基础上,设计了利用致动继电器和atmega328p单片机对传输线故障进行识别的硬件模型,并显示故障类型、故障阻抗、故障发生距离等参数。
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