首页> 外文期刊>Electric power systems research >Analysis of overvoltages in overhead ground wires of extra high voltage (EHV) power transmission line under single-phase-to-ground faults
【24h】

Analysis of overvoltages in overhead ground wires of extra high voltage (EHV) power transmission line under single-phase-to-ground faults

机译:单相接地故障下超高压输电线路架空地线过电压分析

获取原文
获取原文并翻译 | 示例
       

摘要

Overhead ground wires (GW) of extra high voltage (EHV) power transmission lines, apart from lightning-induced overvotlage protection are frequently sued for carrier-current communication. In this case the ground wires are suspended on insulators, the dielectric strength of which should be sufficient for the line operational conditions. The insulation level is defined from the condition of the single-line-to-ground (SLG) fault, thus insulator protecting spark gaps should not be flased-over during such conditions - in order to maintain continuity of the communication channel along the line. Overvoltages during such faults depend on may parameters such as fault place, fault angle, pre-fault load etc. Therefore, designers should investigate the problem for determination of the worst-cast scenario. In this paper, dependence of the overvoltages on 750 kV power transmission line ground wires upon the SLG fault place and pre-fault load of the line in transient and steady states is investigated. The analysis was performed by using dynamic arc model incorporate into the EMTP program. The provided simulations show that adequately introduced primary and secondary arc models are decisive factors for an accurate simulation of the electromagnetic phenomena in the EHV transmission lines during an arc crossing-over (here the primary arc plays an important role) and during so called dead-time, when the secondary arc takes place. This paper gives some recommendations for the insulator strings coordination in the 7560 kV earth wires on the basis of computer simulation results.
机译:除雷电引起的过电压保护外,经常会使用超高压(EHV)电力传输线的架空地线(GW)进行载流通信。在这种情况下,接地线悬挂在绝缘体上,其绝缘强度应足以满足线路运行条件。绝缘级别是根据单线接地故障(SLG)的情况定义的,因此在这种情况下不应剥开绝缘子保护火花隙-以保持沿线的通信通道的连续性。在此类故障期间的过电压取决于诸如故障位置,故障角度,故障前负载等参数。因此,设计人员应调查此问题以确定最坏的情况。本文研究了750 kV输电线路接地线上的过电压对瞬态和稳态下SLG故障位置和线路的故障前负载的依赖性。通过使用合并到EMTP程序中的动态弧模型进行分析。提供的仿真结果表明,充分引入的一次电弧和二次电弧模型是精确模拟超高压输电线路在电弧跨越(此处主要电弧起重要作用)和所谓的死磁期间电磁现象的决定性因素。二次电弧发生的时间。本文根据计算机仿真结果,为7560 kV地线的绝缘子串协调提供了一些建议。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号