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首页> 外文期刊>Turkish Journal of Electrical Engineering and Computer Sciences >Instantaneous protection scheme for backup protection of high-voltage transmission lines
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Instantaneous protection scheme for backup protection of high-voltage transmission lines

机译:高压输电线路后备保护的瞬时保护方案

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The protection scheme focused on in this study is a typical protection system used in high-voltage systems such as 132 kV, 275 kV, and 500 kV. The research will analyze the existing protection scheme for transmission lines that the power utility has implemented and will propose a new protection scheme to improve the performance of the existing scheme. The existing protection scheme currently implemented by the power utility for backup protection operation has a longer fault-clearing time and no restoration time, and it does not utilize support relays. This study will focus on a backup protection operation on high-voltage overhead transmission lines, which take up communication when the main protection has failed to communicate, the relay has failed due to loss of DC supply, or the relay function itself has been blocked. Moreover, all the support relays will be utilized in order to improve the protection system. The improvement will consider three elements, which are the fault-clearing time, fast restoration time, and relay utilization. Each improvement to the protection system will have its own philosophy and concrete rationale, which have advantages or disadvantages for the transmission line. The effect of the improvement scheme will also consider the outcomes in other schemes to ensure that time coordination does not overlap. Every possibility of a fault will be analyzed in order to have a clear understanding of the effects of the three elements. CAPE software will be used as a tool for simulation and to analyze its compatibility with real applications. CAPE software is able to model a real-life transmission line and is also able to simulate faults in the tested area. The results of the simulation show that the backup protection operation improved fault-clearing time and restoration time. It also increased the network's system stability, particularly during the occurrence of maximum fault currents.
机译:本研究重点关注的保护方案是用于132 kV,275 kV和500 kV等高压系统的典型保护系统。该研究将分析电力公司已实施的现有输电线路保护方案,并提出一种新的保护方案以改善现有方案的性能。电力公司当前为备份保护操作实施的现有保护方案具有更长的故障清除时间且没有恢复时间,并且不使用支持继电器。这项研究将集中于高压架空输电线路上的备用保护操作,当主保护装置无法通信,继电器由于直流电源中断而故障或继电器功能本身已被阻塞时,它们会进行通信。而且,将利用所有的支持继电器来改善保护系统。改进将考虑三个要素,即故障清除时间,快速恢复时间和继电器利用率。对保护系统的每项改进都会有其自己的理念和具体原理,这对于传输线是有利还是不利的。改进方案的效果还将考虑其他方案的结果,以确保时间协调不会重叠。将分析每种故障的可能性,以便对这三个要素的影响有清晰的了解。 CAPE软件将用作仿真工具,并分析其与实际应用程序的兼容性。 CAPE软件不仅可以对真实的传输线进行建模,还可以在测试区域内模拟故障。仿真结果表明,后备保护操作提高了故障排除时间和恢复时间。它还增加了网络的系统稳定性,特别是在出现最大故障电流时。

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