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Entree


Transient Analysis of Overhead Transmission Lines Based on Fitting Methods

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Autor(es):
Colqui, Jaimis S. L. ; Araujo, Anderson R. J. ; Pascoalato, Taina F. G. ; Kurokawa, Sergio ; Tsuzuki, MDG ; Pessoa, MAD
Número total de Autores: 6
Tipo de documento: Artigo Científico
Fonte: 2021 14TH IEEE INTERNATIONAL CONFERENCE ON INDUSTRY APPLICATIONS (INDUSCON); v. N/A, p. 8-pg., 2021-01-01.
Resumo

JMarti model is one of the most employed overhead transmission line (OHTL) model for transient analysis. In this model, the characteristic impedance Z(c) and the propagation function H are fitted by Bode's method which uses pole-zeros form. However, another tool available is the Vector Fitting (VF) method which fits a frequency-dependent response into a rational function based on the pole-residue form. For the precise transient analysis, the ground-return impedance must be computed which various approaches have been proposed in literature. The Carson's approach assumes that the soil is modeled by a constant soil resistivity and by a relative permittivity epsilon(r) equal to 1. However, Sunde's approach includes any value of the soil permittivity epsilon(r) which comprises soils from dry to humid grounds. Based on these characteristics, this paper investigates the effects of the Sunde's approach in the JMarti model using the Bode's method and VF method to synthesize the rational functions implemented in the ATP-software. Simulation results show a better accuracy employing the VF method using lower number of poles to fit Z(c) and H. The Furthermore, the transient responses computed with Sunde's approach have presented lower voltage peaks in comparison with those computed with Carson's approach for different values of epsilon(r). (AU)

Processo FAPESP: 19/01396-1 - Representação de torres convencionais e elevadas de linhas de transmissão diretamente no domínio do tempo para análises de transitórios eletromagnéticos
Beneficiário:Anderson Ricardo Justo de Araújo
Modalidade de apoio: Bolsas no Brasil - Pós-Doutorado