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文章摘要
输电线路多脉冲雷电响应探讨
Discussion on Multi-impulse Lightning Response of Transmission Lines
Received:September 10, 2018  Revised:October 09, 2018
DOI:10.19753/j.issn1001-1390.2020.02.014
中文关键词: 架空输电线路  多脉冲雷电  雷电过电压  ATP-EMTP
英文关键词: overhead transmission line  multiple impulse lightning  lightning overvoltage  ATP-EMTP
基金项目:
Author NameAffiliationE-mail
LiDebin* Xihua University lidebin.ok@163.com 
Wen Kai Xihua University 244098923@qq.com 
Zhao Xuelin Xihua University 450738993@qq.com 
Fan Ailing Xihua University 1182816671@qq.com 
Mao Yuxiang Southeast Electrical Power Design Institution Co,Ltd 450383716@qq.com 
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中文摘要:
      架空输电线路在电力系统中作为用户与发电厂的连接枢纽,线路可靠防雷与安全运行尤为重要。本文分析由输电线路上测得的雷电数据,证实了多脉冲雷电的存在,统计并分析雷电波前时间、波尾时间、极性及幅值参数。在电磁暂态仿真软件ATP-EMTP对多脉冲雷电、架空输电线路、杆塔、绝缘子串、避雷器建立仿真模型。仿真分别计算在线路是否安装避雷器时,在单脉冲和多脉冲下发生直击和反击时的响应情况。比较两种不同脉冲雷电下线路过电压的差别。仿真分析表明:避雷器能有效的限制雷电过电压的幅值,并且在多脉冲雷电冲击时,输电线路会出现更高的雷电过电压且持续时间更长的现象,使其防雷更加严峻。
英文摘要:
      Electrical Overhead transmission lines serve as the connection between users and power plants in power systems, henceforth reliable protection against lightning and safety operation of power system are exceedingly important. Multiple impulse lightning current is confirmed by analyzing data measured on transmission line in this paper. Statistics and analysis of lightning wave front time, wave tail time, polarity and amplitude parameters are given.. The simulation models of multiple impulse lightning, overhead transmission line, towers, insulator string and arrester are established by the electromagnetic simulation software ATP-EMTP. Simulations are carried out to calculate the response of a lightning arrester installed in the circuit when a direct strike and a counterattack occur under monopulse and multi-pulse conditions respectively. Compare the difference of overvoltage between two different impulse lightning lines.. Simulation analysis shows that: The lightning arrester can effectively limit the amplitude of lightning overvoltage. And When multi-pulse lightning impulse occurs, transmission lines will have higher lightning overvoltage and longer duration, which makes lightning protection more severe.
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