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Journal ArticleDOI

Compact CRLH Leaky-Wave Antenna Using TE 20 -Mode Substrate-Integrated Waveguide for Broad Space Radiation Coverage

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TLDR
In this paper, a composite right/left-handed (CRLH) based four-quadrant dual-beam scanning leaky-wave antenna is proposed and demonstrated using substrate-integrated waveguide (SIW) technology.
Abstract
In this communication, a composite right-/left-handed (CRLH) based four-quadrant dual-beam scanning leaky-wave antenna is proposed and demonstrated using substrate-integrated waveguide (SIW) technology. The simultaneous use of dual-radiating sections of the TE 20-mode SIW makes the structure quite compact with the enhancement in overall gain as compared to the TE 10-mode SIW. In addition to this, the incorporation of interdigital slots on the top as well as the bottom plates of the waveguide enables the feature of CRLH media, resulting in full-space beam scanning. Based on the orientation of the electric field on the guiding structure, the top and bottom slots are orthogonally placed to each other. The unit cell characteristics and space harmonics are thoroughly investigated using the dispersion and Bloch impedance analysis. By tactfully tuning the design parameters, the balanced condition is obtained at the broadside frequency of 11.5 GHz. The radiated dual beam covers a four-quadrant scanning range of 248°, having the beam steering from –75° to 49° for both top and bottom halves of the space. The proposed antenna operates within 10–12.8 GHz with a peak gain of 18 dBi. The designed antenna is finally fabricated and tested, where the simulated responses are found in good agreement with the corresponding measured data.

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Citations
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Journal ArticleDOI

SIW Periodic Leaky-Wave Antenna Design for Suppressing the Stopband <i>β</i> <sub>0</sub> <i>p</i> = π and Open Stopband by Multimode Resonator Concept

TL;DR: In this paper , a substrate integrated waveguide (SIW) periodic leaky-wave antenna is proposed, which has three resonators consisting of three slots, two asymmetric straight slots are etched on the top surface, and one interdigital slot is at the bottom.

A TM11 High-Order Mode Leaky Wave Antenna

TL;DR: In this article , a leaky-wave antenna (LWA) with high-order mode was proposed, which achieved a 4.6 times higher gain than the traditional TE10-based LWAs.
Proceedings ArticleDOI

Beam Scanning One-Dimensional Leaky-Wave Antenna (Invited)

TL;DR: In this article , a CRLH LWA with two different patches is discussed, where a rectangular slot is etched on one patch, and the other patch is shorted to the ground with a via at each edge.
References
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Journal ArticleDOI

Leaky-Wave Antennas

TL;DR: This paper gives a basic review and a summary of recent developments for leaky-wave antennas (LWAs), a guiding structure that supports wave propagation along the length of the structure, with the wave radiating or “leaking” continuously along the structure.
Journal ArticleDOI

Single-substrate integration technique of planar circuits and waveguide filters

TL;DR: In this article, the authors present new concepts that allow for the complete integration of planar circuits and waveguide filters synthesized on a single substrate by means of metallized post (or via-hole) arrays.
Journal ArticleDOI

Substrate Integrated Waveguide (SIW) Leaky-Wave Antenna With Transverse Slots

TL;DR: In this article, a uniform slotted SIW leaky-wave antenna is designed that has good beam scanning from near broadside (though not exactly at broadside) to forward endfire.
Journal ArticleDOI

Composite Right/Left-Handed Substrate Integrated Waveguide and Half Mode Substrate Integrated Waveguide Leaky-Wave Structures

TL;DR: In this article, the authors proposed a CRLH leaky-wave antenna for antenna applications, which is realized by etching interdigital slots on the waveguide surface and the ground.
Journal ArticleDOI

Millimeter-Wave Substrate Integrated Waveguide Long Slot Leaky-Wave Antennas and Two-Dimensional Multibeam Applications

TL;DR: In this article, two types of substrate integrated waveguide (SIW) long slot leaky-wave antennas with controllable sidelobe level are proposed and demonstrated and demonstrated.
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