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High-Resistance Faults on Two Terminal Parallel Transmission Line: Analysis, Simulation Studies, and an Adaptive Distance Relaying Scheme

机译:两终端并联输电线路的高阻故障:分析,仿真研究和自适应距离中继方案

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摘要

Performance of conventional nonpilot distance relay is affected by ground fault resistance, prefault system conditions, mutual effects of parallel lines and shunt capacitance influences. The work presented in this paper addresses the problems encountered by conventional non pilot distance relay when protecting two terminal parallel transmission lines. One of the key points of this paper is the detailed analysis of the apparent impedance as seen from the relaying point taking into account the effects of transmission line parameter uncertainties, mutual effects of parallel lines for simple and more complex configuration, shunt capacitance influences and variations in the system external to the protected line. Based on extensive computer simulations of the infeed/outfeed, fault resistance, mutual coupling and shunt capacitance effects on the relay characteristics, an adaptive digital distance relaying scheme is proposed using radial basis function neural network which provides more efficient approach for training, computation, adaptation and tripping than the conventional feed forward network using back propagation algorithm. In addition, the proposed adaptive scheme improves the performance of distance relay for double-circuit lines using modified compensation factor. Moreover, the scheme does not require separate communication channel for data transmission. The results of computer simulation show the improvement of sensitivity and selectivity of the relay
机译:常规非飞行员距离继电器的性能受接地故障电阻,故障前系统状况,并联线路的相互影响以及并联电容影响。本文提出的工作解决了传统的非飞行员距离继电器在保护两条终端并行传输线时遇到的问题。本文的重点之一是从中继点看去视在阻抗的详细分析,其中要考虑到传输线参数不确定性的影响,用于简单和更复杂配置的平行线的相互影响,并联电容的影响和变化。在保护线路外部的系统中。基于进/出,故障电阻,互耦和并联电容对继电器特性的广泛计算机仿真,提出了一种采用径向基函数神经网络的自适应数字距离继电器方案,该方案为训练,计算,自适应提供了更有效的方法与使用反向传播算法的传统前馈网络相比,跳闸效果更好此外,所提出的自适应方案使用修正的补偿因子提高了双回线距离继电器的性能。而且,该方案不需要用于数据传输的单独的通信信道。计算机仿真结果表明,继电器的灵敏度和选择性都有所提高。

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