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首页> 外文期刊>Electric power systems research >A practical first-zone distance relaying algorithm for long parallel transmission lines
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A practical first-zone distance relaying algorithm for long parallel transmission lines

机译:长距离并行传输线实用的第一区距离中继算法

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This paper presents a novel non-iterative first-zone distance relaying algorithm for single-line-to-ground fault detection in long parallel transmission lines. The conventional distance protection scheme is based on the series impedance line model, in which the shunt capacitance and propagation effects are neglected. Such a simplification, despite being adequate for short lines, can lead to significant errors in the apparent impedance estimation for long-distance faults. The proposed algorithm is derived from a distributed parameter line Model applicable to long parallel lines, in which the shunt capacitance and mutual impedance and admittance are all fully considered. Sliding faults simulations were carried out in MAT LAB using symmetrical components and graph theory assuming two long parallel transmission lines. It is shown that the proposed algorithm leads to a very good agreement between the apparent and positive sequence impedances to the faults for line lengths up to approximately 800 km, without using iterative methods. This indicates that the proposed algorithm prevents the distance relay from underreaching for long-distance faults in parallel lines, without additional computational cost. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文提出了一种新颖的非迭代的第一区域距离中继算法,用于长并行传输线中的单线接地故障检测。传统的距离保护方案基于串联阻抗线模型,其中忽略了并联电容和传播效应。尽管对于短线路是足够的,但是这种简化可能会导致远距离故障的视在阻抗估计中出现重大误差。所提出的算法是从适用于长平行线的分布式参数线模型推导而来的,其中充分考虑了并联电容以及互阻抗和导纳。假设两个两条平行的平行传输线,在MAT LAB中使用对称分量和图论进行滑移故障仿真。结果表明,在不使用迭代方法的情况下,对于最长约800 km的线路长度,所提出的算法在故障的视在和正序阻抗之间产生了很好的一致性。这表明所提出的算法可防止距离继电器对于并行线路中的远距离故障无法到达,而无需额外的计算成本。 (C)2017 Elsevier B.V.保留所有权利。

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