A new class of inline pseudo-elliptic substrate-integrated waveguide (SIW) filters is presented in this article. The proposed structure is based on a novel resonator, consisting of a pair of mushroom-shaped resonators. The odd and even symmetry modes of the dual-post resonator are exploited as resonant and nonresonating modes, respectively. The nonresonating mode generates a direct input-to-output coupling, thus providing a transmission zero (TZ) that can be either located above or below the resonant-mode pole. The coupling between the resonant mode and the source (or load), as well as the input-to-output coupling, can be controlled by selecting the disk size and the metal post position of the mushroom resonators, as well as the rotation angle of the pair of mushrooms. The Nth-order filtering functions with a number of TZs up to the number of poles can be realized by cascading N dual-post resonators. With respect to the conventional in-line waveguide filter with inductive obstacles, the proposed filter is easier to tune and more selective. A fourth-order dual-post filter with four TZs was designed and experimentally demonstrated to show the feasibility of the proposed approach.

A New Class of Pseudo-Elliptic SIW Filters Using Dual Mushroom-Shaped Resonators

Silvestri, Lorenzo
;
Tomassoni, Cristiano;Perregrini, Luca;Bozzi, Maurizio
Conceptualization
2025-01-01

Abstract

A new class of inline pseudo-elliptic substrate-integrated waveguide (SIW) filters is presented in this article. The proposed structure is based on a novel resonator, consisting of a pair of mushroom-shaped resonators. The odd and even symmetry modes of the dual-post resonator are exploited as resonant and nonresonating modes, respectively. The nonresonating mode generates a direct input-to-output coupling, thus providing a transmission zero (TZ) that can be either located above or below the resonant-mode pole. The coupling between the resonant mode and the source (or load), as well as the input-to-output coupling, can be controlled by selecting the disk size and the metal post position of the mushroom resonators, as well as the rotation angle of the pair of mushrooms. The Nth-order filtering functions with a number of TZs up to the number of poles can be realized by cascading N dual-post resonators. With respect to the conventional in-line waveguide filter with inductive obstacles, the proposed filter is easier to tune and more selective. A fourth-order dual-post filter with four TZs was designed and experimentally demonstrated to show the feasibility of the proposed approach.
2025
The Electrical and Electronics Engineering category covers resources concerned with applications of electricity, generally those involving current flow through conductors, as in motors and generators. This category also covers the examination of the conduction of electricity through gases or a vacuum as well as through semiconducting materials. Topics include image and signal processing, electromagnetics, electronic components and materials, microwave technology, and microelectronics.
Esperti anonimi
Inglese
Internazionale
STAMPA
73
10
7895
7905
11
Microwave filters; miniaturization; quality factor; substrate-integrated waveguide (SIW)
no
4
info:eu-repo/semantics/article
262
Silvestri, Lorenzo; Tomassoni, Cristiano; Perregrini, Luca; Bozzi, Maurizio
1 Contributo su Rivista::1.1 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/1549419
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