Development of digital distance relaying algorithm in combined transmission lines with underground power cables

J.B. Lee, C. Ha, C. Jung
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引用次数: 11

Abstract

This paper presents a digital distance relaying algorithm in combined transmission lines with underground power cables. When underground power cables are used as part of a transmission line, the design and setting of the protective relay will have to consider the different impedance characteristics because of the configuration characteristics of the cables. A power cable system consists of the conductor, a sheath, several kinds of joints, grounding types of such joints, cable covering protection units and grounding wires with resistance. Simulation for an actual complex transmission line with 154 kV XLPE cables was carried out to develop a correct distance relaying algorithm using modeling which was, in detail, established using EMTP and ATP Draw. This paper describes the accurate calculation algorithm of line impedance with a compensation factor at the relay point as well as a method to discriminate the fault section between both sections when a single line-to-ground fault occurs. Simulation results reveal that the accuracy of the line impedance obtained by the proposed algorithm has been increased compared with the impedance obtained using the general distance relaying algorithm.
输电线路与地下电缆组合中数字距离中继算法的研究
提出了一种地下电缆与输电线路组合的数字距离中继算法。当地下电力电缆作为输电线路的一部分使用时,保护继电器的设计和整定必须考虑由于电缆的配置特性而产生的不同阻抗特性。电力电缆系统由导体、护套、几种接头、接头的接地类型、电缆覆盖保护单元和带电阻的接地线组成。对实际的154 kV交联聚乙烯电缆复杂输电线路进行了仿真,利用EMTP和ATP Draw建立了正确的距离继电算法。本文介绍了在继电点加补偿因子的线路阻抗的精确计算算法,以及在发生单线对地故障时区分两段故障段的方法。仿真结果表明,与一般距离继电算法相比,该算法得到的线路阻抗精度有所提高。
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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