Lu Yongling
Electric Power Research Institute
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Publication
Featured researches published by Lu Yongling.
international conference on lightning protection | 2014
Lu Yongling; Liu Yang; Zhou Zhicheng; Tao Fengbo
This paper presents some statistical analysis of lightning trips of overhead transmission lines in Jiangsu power grid and lightning activities across the province from 2005 to 2013 and analyzes the effects of lightning activities, topography, tower structure and insulation configuration and other factors along line corridors on lightning trips. Based on existing lightning protection measures such as reducing the lightning protection angle of transmission lines, increasing the length of composite insulators and long bar porcelain insulator with parallel gaps, this paper proposes lightning protection measures for new and existing overhead transmission lines to provide references for operation and maintenance.
international symposium on instrumentation and measurement sensor network and automation | 2013
Lu Yongling; Liu Yang; Zhou Zhicheng; Lei Mengfei; Zhao Chun; Lu En-ze
To correctly record the process of lightning strike on power line and locate the fault site fast, serving to summarize their features and further take targeted protection measures against lightning strike, a distributed lightning current monitoring technology is proposed based on the simulation result. Its able to obtain necessary parameters of transient current, therefore make recognition of lightning fault and distinction of strike type, thus maximizing the effectiveness of protection measures. Preliminary trial operation suggests it works.
international symposium on instrumentation and measurement sensor network and automation | 2013
Lu Yongling; Liu Yang; Zhou Zhicheng; Tao Fengbo
Based on the principle of calculating asymmetric faults, this paper made accurate simulation research on distribution of short-circuit current and its factors affecting it using electromagnetic transient analysis program ATP-EMTP for 220kV transmission lines. Conculsions are gotten that most of short-circuit current is dispersed by lightning conductors and and shunt coefficient under operating frequency is very different from that under lighting current. This is of great significance theoretically for checking and selection of the lightning conductor on thermal stability[1], potential increase and positioning of flashover towers, electromagnetic influences on adjacent communication lines, economical design of grids and so on.
Archive | 2014
Liu Yang; Chen Jie; Lu Yongling; Gao Song; Ma Yong; Zhou Zhicheng
Archive | 2014
Liu Yang; Chen Jie; Gao Song; Lu Yongling; Ma Yong; Zhou Zhicheng
Archive | 2013
Zhou Zhicheng; Zhao Chenlong; Gao Song; Zhang Junguang; Wang Liming; Liu Yang; Tao Fengbo; Ma Yong; Lu Yongling; Chen Jie
Archive | 2015
Liu Yang; Chen Jie; Lu Yongling; Gao Song; Ma Yong; Zhou Zhicheng
Archive | 2014
Liu Yang; Gao Song; Zhou Zhicheng; Lu Yanlong; Chen Jie; Lu Yongling; Zhu Mengzhou
Archive | 2014
Liu Yang; Gao Song; Zhou Zhicheng; Lu Yanlong; Chen Jie; Lu Yongling; Zhu Mengzhou
Archive | 2014
Chen Jie; Zhou Zhicheng; Liu Yang; Lu Yongling; Xie Tianxi; Gao Song