DocumentCode
1101141
Title
Analysis of Lightning Shielding Failure for 500-kV Overhead Transmission Lines Based on an Improved Leader Progression Model
Author
Wei, Bengang ; Fu, Zhengcai ; Yuan, Haiyan
Author_Institution
Dept. of Electr. Eng., Shanghai JiaoTong Univ., Shanghai
Volume
24
Issue
3
fYear
2009
fDate
7/1/2009 12:00:00 AM
Firstpage
1433
Lastpage
1440
Abstract
An improved leader progression model (LPM) for analyzing the shielding failure performance of overhead transmission lines is established, and implemented in calculating the shielding failure rate and shielding failure flashover rate of 500-kV transmission lines. This paper discusses the inadequate parts of the existing LPM and presents improvements to meliorate the model for applications on extremely high voltage (EHV) transmission lines. The model is improved mainly in three aspects: 1) the background electric field produced by the lightning cloud is simulated by multielectrode configuration, 2) different inception criteria of upward leaders for shielding wires and phase conductors are chosen, and 3) the impact of power frequency operating voltage on the shielding failure flashover rate is considered. The improved model is applied to analyze the shielding failure performance of 500-kV transmission lines in China considering the flat and hilly terrain conditions. The shielding failure flashover rates by existing models and the improved model are calculated and compared with the operating data of 500-kV transmission lines. It is shown that the predicted result of the improved LPM is in accordance with the operating experience. The improved model is suitable for the lightning shielding assessment and applicable in the design of EHVAC transmission lines.
Keywords
cable shielding; electric fields; lightning protection; power overhead lines; EHVAC transmission lines; background electric field; leader progression model; lightning cloud; lightning shielding failure; multielectrode configuration; overhead transmission lines; phase conductors; voltage 500 kV; Clouds; Conductors; Failure analysis; Flashover; Lightning; Performance analysis; Power overhead lines; Power transmission lines; Voltage; Wires; Extremely high-voltage (EHV) transmission lines; lightning; modeling; shielding;
fLanguage
English
Journal_Title
Power Delivery, IEEE Transactions on
Publisher
ieee
ISSN
0885-8977
Type
jour
DOI
10.1109/TPWRD.2009.2022675
Filename
5109888
Link To Document