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Journal ArticleDOI

Geometrical Optics-Based Advanced Design of an Open Cavity Resonant Antenna

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TLDR
In this paper, geometrical optics-based raytracing was combined with modal analysis to realize an open cavity structure as an advanced variant of the resonant cavity antenna (RCA).
Abstract
This letter explores geometrical optics-based raytracing in combination with modal analysis to realize an open cavity structure as an advanced variant of the resonant cavity antenna (RCA). Additional ray confinement has been ensured by determining accurate phase-locking conditions as demonstrated for the first time. Its combination with the analysis of the cavity mode has also been introduced to determine the optimum design parameters, achieving improved radiation properties. With respect to a reference RCA reported earlier, the proposed approach exhibits a remarkable improvement in gain by 4–9 dB, resulting in about 17 dBi peak value consistently over the full 18% matching bandwidth. This is resultant from an increase in aperture efficiency, typically from 27% to 74%. This is achieved without any compromise with the cross-polarization property. The sidelobe level improves over the band except in higher frequency in H-plane. The proposed concept is commercially viable, showing significantly advantageous features.

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Book ChapterDOI

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Advanced Design of High-Gain Fabry–Perot Cavity Antenna Offering Wide Common Impedance and Gain Bandwidth

TL;DR: In this paper , a Fabry-Perot cavity antenna (FPCA) is proposed to achieve wide common impedance and gain bandwidth along with high gain, which is achieved by employing a printed primary radiator and superstrate with superior manufacturing capabilities.
Journal ArticleDOI

Advanced Design of High-Gain Fabry–Perot Cavity Antenna Offering Wide Common Impedance and Gain Bandwidth

TL;DR: In this article , a Fabry-Perot cavity antenna (FPCA) is proposed to achieve wide common impedance and gain bandwidth along with high gain, which is achieved by employing a printed primary radiator and superstrate with superior manufacturing capabilities.

A Dual Wideband Compact Shared-Aperture Microstrip Patch/Fabry–Perot Resonator Cavity Antenna

TL;DR: In this paper , a dual wideband compact shared-aperture microstrip patch/Fabry-Perot resonator cavity antenna is proposed for dual-band point-to-point line-of-sight (LOS)/non-LOS (NLOS) communication systems.
Proceedings ArticleDOI

Hybrid Dielectric Resonator Antenna: Innovations Over the Decades and State-of-the-Art Techniques

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References
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Journal ArticleDOI

Wideband Near-Field Correction of a Fabry–Perot Resonator Antenna

TL;DR: In this paper, an approach to correcting electric near-field phase and magnitude over a wideband for Fabry-Perot resonator antennas (FPRAs) is presented, where a time-average Poynting vector in conjunction with a phase gradient analysis is utilized to suggest the initial configuration of the NFCS for wideband performance.
Journal ArticleDOI

Compact High-Gain Antenna With Simple All-Dielectric Partially Reflecting Surface

TL;DR: In this paper, a simplified approach to design compact, wideband resonant-cavity antennas (RCAs) with partially reflecting surfaces (PRSs) made out of only a single dielectric material is presented.
Journal ArticleDOI

Analytical Model for Calculating the Radiation Field of Microstrip Antennas With Artificial Magnetic Superstrates: Theory and Experiment

TL;DR: In this article, a fast analytical solution for the radiation field of a microstrip antenna loaded with a generalized superstrate is proposed using the cavity model of microstrip antennas in conjunction with the reciprocity theorem and the transmission line analogy.
Journal ArticleDOI

New Approach in Designing Resonance Cavity High-Gain Antenna Using Nontransparent Conducting Sheet as the Superstrate

TL;DR: In this article, a resonance cavity antenna (RCA) employing nontransparent solid metal sheet as superstrate is proposed for the first time, and the proposed configuration is much advantageous in terms of design, simplicity, structural stability, fabrication, and cost without compromising in gain, efficiency, and bandwidth.
Journal ArticleDOI

A Review of Broadband Low-Cost and High-Gain Low-Terahertz Antennas for Wireless Communications Applications

TL;DR: This paper demonstrates different approaches of recent development on wideband and high gain sub-millimeter-wave and Low-THz antennas as well as their fabrication technologies and introduces an all-metal model based on the Fabry–Perot cavity (FPC) theory.
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