DocumentCode
112599
Title
FDTD Computation of Lightning-Induced Voltages on Multiconductor Lines With Surge Arresters and Pole Transformers
Author
Tran Huu Thang ; Baba, Yoshihiro ; Rakov, Vladimir A. ; Piantini, Alexandre
Author_Institution
Dept. of Electr. & Electron. Eng., Tsuruoka Nat. Coll. of Technol., Yamagata, Japan
Volume
57
Issue
3
fYear
2015
fDate
Jun-15
Firstpage
442
Lastpage
447
Abstract
In this paper, lightning-induced voltages on multiconductor lines with surge arresters and pole transformers have been computed using the 3-D finite-difference time-domain method. This method uses a subgrid model, in which spatial discretization is fine (cell side length is 0.5 m) in the vicinity of overhead wires and coarse (cell side length is 5 m) in the rest of the computational domain. In the simulations, four-conductor lines with surge arresters and pole transformers are considered. The 1-cm-radius overhead conductors are represented by placing a wire having an equivalent radius of about 0.12 m (≈ 0.23 × 0.5 m) in the center of an artificial rectangular prism having a cross-sectional area of 1 m × 1 m (2 cells × 2 cells) and the modified (relative to air) constitutive parameters: lower electric permittivity and higher magnetic permeability. The computed lightning-induced voltage waveforms agree reasonably well with the corresponding ones measured in the small-scale experiment of Piantini et al. (2007).
Keywords
arresters; finite difference time-domain analysis; lightning protection; multiconductor transmission lines; power transformers; 3D finite-difference time-domain method; FDTD computation; artificial rectangular prism; computed lightning-induced voltage waveforms; electric permittivity; four-conductor lines; lightning-induced voltages; magnetic permeability; multiconductor lines; pole transformers; spatial discretization; subgrid model; surge arresters; Arresters; Conductors; Finite difference methods; Lightning; Surges; Voltage measurement; Wires; Finite-difference time-domain (FDTD) method; lightning; lightning-induced voltage; subgrid model;
fLanguage
English
Journal_Title
Electromagnetic Compatibility, IEEE Transactions on
Publisher
ieee
ISSN
0018-9375
Type
jour
DOI
10.1109/TEMC.2014.2382115
Filename
7001037
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