A design of a directive antenna based on a Fabry-Pérot cavity is described, using a single metallic partially reflecting surface (PRS) in front of a coaxial-fed patch antenna. The main features of this type of antennas are their low profile and single feeding point. The design is initially carried out following an approximate ray model analysis using the extracted PRS characteristics from electromagnetic simulations. The antenna performance is also simulated, obtaining a directivity of 20.6 dBi for 15.25 GHz, and verifying its predicted behaviour. Furthermore, a prototype is manufactured at the group premises and some preliminary measurements are presented.The development of this research project is being possible thanks to the Initiation t...
The power bandwidth of Fabry-Pérot-cavity antennas comprised of a thin partially-reflective-surface...
Abstract – The enhancement of directivity of a monopole located in a Fabry-Perot type cavity is stud...
University of Minnesota Ph.D. dissertation. December 2017. Major: Electrical Engineering. Advisors: ...
A novel technique to design Fabry-Pérot antennas with non-homogeneous PRS is described. It takes adv...
A novel technique to design Fabry-Pérot antennas with non-homogeneous partially reflective surfaces ...
International audienceThe enhancement of directivity of a monopole located in a Fabry-Perot type cav...
This paper presents the design of a planar, low-profile, high-gain, substrate-integrated Fabry-Pérot...
In this dissertation, we examine a dual-band version of the Fabry-Pérot resonant cavity antenna that...
We designed a patch antenna surrounded by a mushroom-like electromagnetic band-gap (EBG) structure a...
Antennas with large gain are obtained here with one or few radiators. The main idea consists of inse...
The authors present the design and implementation of a new type of micromachined terahertz planar hi...
Fabry Perot antenna with Frequency Selective Surface (FSS) has been presented and analyzed in this ...
In this paper a Fabry-Perot cavity (FPC) has been used to design a 60 GHz single feed directive ante...
A simple single-feed resonant cavity antenna having a flat, low-profile all-dielectric partially ref...
Rapid development in wireless communication systems at microwave and millimeter-wave frequencies i...
The power bandwidth of Fabry-Pérot-cavity antennas comprised of a thin partially-reflective-surface...
Abstract – The enhancement of directivity of a monopole located in a Fabry-Perot type cavity is stud...
University of Minnesota Ph.D. dissertation. December 2017. Major: Electrical Engineering. Advisors: ...
A novel technique to design Fabry-Pérot antennas with non-homogeneous PRS is described. It takes adv...
A novel technique to design Fabry-Pérot antennas with non-homogeneous partially reflective surfaces ...
International audienceThe enhancement of directivity of a monopole located in a Fabry-Perot type cav...
This paper presents the design of a planar, low-profile, high-gain, substrate-integrated Fabry-Pérot...
In this dissertation, we examine a dual-band version of the Fabry-Pérot resonant cavity antenna that...
We designed a patch antenna surrounded by a mushroom-like electromagnetic band-gap (EBG) structure a...
Antennas with large gain are obtained here with one or few radiators. The main idea consists of inse...
The authors present the design and implementation of a new type of micromachined terahertz planar hi...
Fabry Perot antenna with Frequency Selective Surface (FSS) has been presented and analyzed in this ...
In this paper a Fabry-Perot cavity (FPC) has been used to design a 60 GHz single feed directive ante...
A simple single-feed resonant cavity antenna having a flat, low-profile all-dielectric partially ref...
Rapid development in wireless communication systems at microwave and millimeter-wave frequencies i...
The power bandwidth of Fabry-Pérot-cavity antennas comprised of a thin partially-reflective-surface...
Abstract – The enhancement of directivity of a monopole located in a Fabry-Perot type cavity is stud...
University of Minnesota Ph.D. dissertation. December 2017. Major: Electrical Engineering. Advisors: ...