DocumentCode
1369674
Title
Computational Environment for Simulating Lightning Strokes in a Power Substation by Finite-Difference Time-Domain Method
Author
Melo e Silva de Oliveira, R. ; da Silva Souza Sobrinho, C.L.
Author_Institution
Inst. of Technol., Fed. Univ. of Para, Belem, Brazil
Volume
51
Issue
4
fYear
2009
Firstpage
995
Lastpage
1000
Abstract
A computational environment was developed for simulating transient electromagnetic phenomena involving complex structures. The system is based on the finite-difference time-domain method and includes tools such as a graphical user interface, a 3-D structure visualization module, thin-wire formulation, dielectrics and metallic blocks, perfectly matched layers, voltage and current sources, creation of field distribution images, voltage and current calculations, among others, all of them associated with automatic domain division for parallel (distributed) processing. In this paper, this system is used for obtaining full-wave solutions, for the first time, of lightning surge interactions with the structural part of a power substation. Parameters such as transitory step and touch voltages and potential distribution on ground surface are calculated for 1 kA peak for the injected surge current.
Keywords
finite difference time-domain analysis; graphical user interfaces; lightning protection; parallel processing; power engineering computing; substation protection; 3D structure visualization module; distributed processing; field distribution images; finite-difference time-domain method; graphical user interface; lightning strokes simulation; lightning surge interactions; metallic blocks; parallel processing; perfectly matched layers; power substation; thin-wire formulation; transient electromagnetic phenomena; Computational modeling; Electromagnetic transients; Finite difference methods; Graphical user interfaces; Lightning; Substations; Surges; Time domain analysis; Visualization; Voltage; Automated parallel processing computational system; finite-difference time-domain (FDTD) method; full-wave solution; grounding systems; power substation; transient analysis;
fLanguage
English
Journal_Title
Electromagnetic Compatibility, IEEE Transactions on
Publisher
ieee
ISSN
0018-9375
Type
jour
DOI
10.1109/TEMC.2009.2028879
Filename
5238646
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