Impact of Coupling Breakers in a Power Plant Fault Analysis

Levent Kılıç, A. Arsoy
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Abstract

Over the last decades, the private sector power plants are integrated into the power system with growing number and size. Since these power plants are large, their impacts on the grid are strong as well. The steady state and transient analyses required for plant connection to the grid, mostly play a role in the selection of the equipment and determination of the protection settings. Installation and commissioning of power plants based on accurate analyses are of great importance in raising the reliability of the system. The number of generating units in a power plant can be increased for capacity expansion. The coupling breakers (bus tie breakers) are used in plant substations configured in double bus scheme. Each generator are connected to the grid through these buses having the coupling breaker in a closed/opened position. This study investigates the impact of these breakers in terms of short circuit faults by using a real data obtained from the natural gas power plant connected to the 154 kV grid through overhead transmission line. Fault currents are computed based on IEC 60909 and compared for different status of coupling breakers.
联轴器对电厂故障分析的影响
在过去的几十年里,私营部门的发电厂以越来越多的数量和规模融入电力系统。由于这些发电厂很大,它们对电网的影响也很大。电厂并网所需的稳态和暂态分析主要在设备的选择和保护设置的确定中起作用。基于准确分析的电厂安装调试对提高系统可靠性具有重要意义。为了扩大发电能力,可以增加发电厂的发电机组数量。耦合断路器(母线合闸)用于双母线结构的电站变电所。每个发电机通过这些母线连接到电网,这些母线的耦合断路器处于闭合/打开位置。本研究以154千伏架空输电线与电网相连的天然气电厂为例,对断路器对短路故障的影响进行了研究。根据iec60909计算了故障电流,并对不同状态下的耦合断路器进行了比较。
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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