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Efficient analysis of in-line waveguide filters and frequency-selective surfaces with stepped holes

โœ Scribed by Vicente E. Boria; Maurizio Bozzi; Francesco Bruni; Santiago Cogollos; Giuseppe Conciauro; Benito Gimeno; Luca Perregrini


Publisher
John Wiley and Sons
Year
2003
Tongue
English
Weight
308 KB
Volume
13
Category
Article
ISSN
1096-4290

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โœฆ Synopsis


This paper presents a novel method for the analysis of large classes of microwave and mm-wave passive components, including in-line waveguide filters, single-and multi-layer frequency selective surfaces, and open-ended waveguide array antennas. This method is based on the segmentation technique, which permits us to reduce complex components to cascaded waveguide step discontinuities, which are separately characterized through their generalized impedance matrices, as calculated by the integral equation (IE) technique and the boundary integral-resonant mode expansion (BI-RME) method. Some examples demonstrate the flexibility and efficiency of the IE/BI-RME method, and its utility in investigating novel structures not requiring costly fabrication techniques.


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## Abstract In this article, the spectral domain method of moment is utilized to analyze frequency selective surface with RWG basis functions for arbitrarily shaped metal geometry. The Fourier transform of the RWG basis function can be expressed in the analytical form and the fast convergence chara