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research article

Analysis of Transmission Lines With Arrester Termination, Considering the Frequency-Dependence of Grounding Systems

Sheshyekani, Keyhan
•
Sadeghi, S. H. H.
•
Moini, Rouzbeh
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2010
IEEE Transactions on Electromagnetic Compatibility

The paper proposes a modeling technique to analyze the response of a transmission line terminated by a lightning arrester connected to a grounding system buried in a lossy ground. In this technique, the transmission line is modeled in the frequency domain with the aid of Baum-Liu-Tesche equations, while the grounding system to which the arrester is connected is treated using a general electromagnetic approach. The electromagnetic approach is based on the solutions to Maxwell's equations obtained by using the method of moment in the frequency domain. The arrester nonlinearity is included in the frequency-domain analysis using the arithmetic operator method. To examine the performance of the proposed modeling technique, numerical results are presented for a single-conductor transmission line connected to a typical lightning arrester. The results are first compared for a simple grounding configuration of a vertical rod with those obtained using the well-known electromagnetic transient program, showing the validity of the proposed technique. The generality of the technique is then demonstrated by studying the results of a more complex case of a typical grounding grid. It is shown that the early time responses of the lightning overvoltages are affected by the harmonic impedance of the grounding system.

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Type
research article
DOI
10.1109/TEMC.2009.2029863
Web of Science ID

WOS:000271951600013

Author(s)
Sheshyekani, Keyhan
Sadeghi, S. H. H.
Moini, Rouzbeh
Rachidi, Farhad  
Paolone, Mario  
Date Issued

2010

Publisher

Institute of Electrical and Electronics Engineers

Published in
IEEE Transactions on Electromagnetic Compatibility
Volume

51

Issue

4

Start page

986

End page

994

Subjects

Arresters

•

grounding electrodes

•

lightning

•

nonlinear systems

•

overvoltage protection

•

Arithmetic Operator Method

•

Nonlinear Circuits

•

Simulation

•

Phase

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LRE  
SCI-STI-FR  
DESL  
Available on Infoscience
August 3, 2010
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/51968
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