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A Micro Computer-Based Methodology for Distance Protection on Long UHV Transmission Lines Using Symmetrical Components

机译:基于微计算机的对称部件在特高压长输电线路距离保护中的应用

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This paper proposes a methodology for the long UHV transmission lines distance protection using microprocessor for fault detection, isolation and auto reclosing processes. In the present era, with the development of microprocessor technology, their extra efficient controlling and computing abilities can be utilized in distance relaying for efficient computing of fault distance and the type of fault occurred on the transmission line. Using Symmetrical component theory a single performance equation is developed that will encounter all type of faults on transmission lines regardless of the nature of the fault. Microprocessor will process on these sequence components to estimate the type of fault and the distance of fault from the relay. ETAP is used as a simulation tool to obtain the desired results. Although the formulation described here is independent of hardware yet it provides a complete analytical base for distance protection and is analyzed for different types of fault conditions using simulation tools.
机译:本文提出了一种使用微处理器进行故障检测,隔离和自动重合闸过程的长距离特高压输电线路距离保护方法。在当今时代,随着微处理器技术的发展,它们的超高效控制和计算能力可用于距离中继,以有效地计算故障距离和传输线上发生的故障的类型。使用对称分量理论,开发了一个单一的性能方程,无论故障的性质如何,该方程都会在传输线上遇到所有类型的故障。微处理器将对这些顺序组件进行处理,以估计故障的类型以及距继电器的故障距离。 ETAP用作获得所需结果的仿真工具。尽管此处描述的公式独立于硬件,但它为距离保护提供了完整的分析基础,并使用仿真工具针对不同类型的故障条件进行了分析。

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