输电线路雷电反闪络分析建模(以220kV Biyagama-Kotmale输电线路为例)

M. Chanaka, K. Shanthi, R. Perera
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引用次数: 15

摘要

输电线路的性能对一个国家特定供电系统的可靠性有很大的影响。不可靠的输电线路甚至会导致全面停电,造成巨大的经济损失。雷电反闪络效应被认为是造成输电线路中断的主要原因之一,特别是在雷电频繁的热带国家。目前有几种类型的解决方案可用于解决闪电反闪络问题。然而,与其他解决方案相比,传输线安装避雷器的现代概念由于其优异的性能,易于安装和低成本而广受欢迎。本文描述了对斯里兰卡输电网络中一条关键的山地220kV输电线路进行的案例研究,该线路过去有几次雷击反闪相关的停电导致系统整体故障的记录。本文主要研究了利用电磁暂态计算机程序对选定的传输线进行暂态建模和后续仿真,从而分析反闪络事件的方法。本研究采用电力系统CAD (PSCAD)软件程序作为软件工具进行建模和仿真。采用输电线避雷器(TLA)和不输电线避雷器(TLA)进行仿真,评价了TLA对反闪络的影响。仿真结果表明,02nos的安装效果良好。在每个选定的塔的顶部阶段的TLA提高了整体性能。
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Modeling of power transmission lines for lightning back flashover analysis (A case study: 220kV Biyagama-Kotmale transmission line)
Performance of power transmission lines has a great impact on reliability of a particular power supply system of a country. Unreliable power transmission lines can even lead to total power failures resulting with great financial losses. The lightning back flashover effects are recognized as one of the major causes of transmission line outages, especially in tropical countries with frequent lightning. Several types of solutions are presently available to address the issue of lightning back flashovers. However, the modern concept of transmission line mounted surge arresters is of great popularity due to its excellent performance, ease of installation and the low cost compared to the other solutions. This paper describes a case study carried out on one of the critical hill-country 220kV power transmission lines of the Sri Lankan transmission network, having several past records of lightning back flashover related outages leading to total system failures. The study described in this paper mainly focuses on the way of analyzing the back flashover events by transient modeling and subsequent simulation of the selected transmission line in an electromagnetic transient computer program. The study uses the Power System CAD (PSCAD) software program as the software tool for the purpose of modeling and simulation. Simulations are carried out with and without Transmission Line Arrester (TLA) to evaluate TLA's impact on back flashover. The results of the simulations show that the installation of 02nos. of TLA at top phases of each selected towers improve the overall performance.
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