Study and Solution of Current Differential Protection Disability for High Series Compensation Transmission Line

Saleem Abbas, L. Fang
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Abstract

With the increasing day by day integration of large-size generators and tighter among the power systems, in internal fault, the fault current of Series Compensated (SC) lines could also be upturned. Therefore, the differential protection of SC transmission lines may stop working to operate because of less sensitivity. In this research article the causes for the current overturning in SC lines and its effects differential protection. The working characteristics of differential protection are analyzed by focusing on multiple-factors, for example, different series compensation degrees, types of fault, system operation mode, the difference of power angle, points of the fault, and transition resistance. An enhanced standard based on the current amplitudes and phases on both sides of the series compensated lines is proposed. Furthermore, to make stronger the operation characteristics of differential protection, the triple-fold line is chosen to get better sensitivity for internal faults in the article. The results are efficient to improve the protection sensitivity of SC lines during the internal fault. The PSCAD/EMTDC simulation and the power system dynamic physics simulation demonstrate that protection sensitivity is increased in the improved scheme. Keywords : Differential Protection, Series compensation, EHV/ UHV, Current reverse, sensitivity analysis. DOI: 10.7176/CTI/10-06 Publication date: August 31 st 2020
高串联补偿输电线路电流差动保护失能的研究与解决
随着大型发电机集成化程度的日益提高和电力系统之间的联系日益紧密,在内部故障时,串联补偿线路的故障电流也会出现上升。因此,SC输电线路的差动保护可能会因为灵敏度较低而停止工作。本文研究了超导线路中电流倾覆的原因及其对差动保护的影响。从不同串联补偿程度、故障类型、系统运行方式、功率角差异、故障点、过渡电阻等多因素分析差动保护的工作特性。提出了一种基于串联补偿线两侧电流幅值和相位的增强标准。此外,为了增强差动保护的运行特性,本文选择了三重线,以获得更好的内部故障灵敏度。研究结果对提高SC线路内部故障时的保护灵敏度是有效的。PSCAD/EMTDC仿真和电力系统动态物理仿真表明,改进方案提高了保护灵敏度。关键词:差动保护,串联补偿,超高压/特高压,电流反向,灵敏度分析出版日期:2020年8月31日
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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