The aim of this paper is to apply the Generalized Wiener Hopf (GWH) technique to obtain the solution of the scattering by a three part PEC plane. In developing this task we observe that a novel network representation in the Laplace domain of a semi layer slab bounded by a PEC is required. This representation of semi layer slab is based on the Fredholm factorization. The circuital representation of semi slab leads to a two port network. The connection of this two port network with the two one port networks representing the two angular regions constitutes a circuit that provides a Fredholm integral equation of second kind easily to be solved.
The wiener hopf solution of a three-part pec plane / Daniele, Vito; Lombardi, Guido; Zich, Rodolfo. - ELETTRONICO. - (2017), pp. 570-573. ((Intervento presentato al convegno 19th International Conference on Electromagnetics in Advanced Applications, ICEAA 2017 tenutosi a Verona, Italy nel 2017 [10.1109/ICEAA.2017.8065309].
Titolo: | The wiener hopf solution of a three-part pec plane | |
Autori: | ||
Data di pubblicazione: | 2017 | |
Abstract: | The aim of this paper is to apply the Generalized Wiener Hopf (GWH) technique to obtain the sol...ution of the scattering by a three part PEC plane. In developing this task we observe that a novel network representation in the Laplace domain of a semi layer slab bounded by a PEC is required. This representation of semi layer slab is based on the Fredholm factorization. The circuital representation of semi slab leads to a two port network. The connection of this two port network with the two one port networks representing the two angular regions constitutes a circuit that provides a Fredholm integral equation of second kind easily to be solved. | |
ISBN: | 9781509044511 | |
Appare nelle tipologie: | 4.1 Contributo in Atti di convegno |
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216_Paper_Bernard_Lombardi.pdf | Author final version | 2. Post-print / Author's Accepted Manuscript | Non Pubblico - Accesso privato/ristretto | Administrator Richiedi una copia |
http://hdl.handle.net/11583/2704175