Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

5.8 GHz Circularly Polarized Rectangular Microstrip Antenna Arrays simulation for Point-to-Point Application

View through CrossRef
In this paper, the design and simulation of rectangular microstrip antenna arrays for improving antenna gain is performed for point-to-point application. The proposed design is composed of four elements microstrip antenna with an array configuration operating at 5.8 GHz. Each element is constructed from four truncated arrays radiating elements and an inclined slot on each patch which capable to achieve circular polarized capability. The design of the 2x1 and 2x2 of rectangular microstrip array antenna was implemented from the designed of single rectangular patch antenna as the basic building element. The designed 2x1 and 2x2 array were fed by microstrip transmission line which applied a technique of quarter wave impedance matching. The antenna design was etched on Rogers RT 5880 substrate with 2.1 and 1.53 mm of dielectric constant and thickness respectively. All the designed structure were simulated in CST software. The main results of the designed antennas were compared in terms of gain, axial ratio and return loss. Based on the return loss simulation results, the designed antennas resonated exactly at the desired resonant frequency of 5.8 GHz which indicates good antenna designs. Compared to the single patch antenna having an antenna gain of 8.26 dB, the 2x1 and 2x2 arrays achieved a gain of 10.24 dB and 13.29 dB respectively. The results show that the designed rectangular microstrip antenna arrays have an improved gain performance over the single patch antenna.
Title: 5.8 GHz Circularly Polarized Rectangular Microstrip Antenna Arrays simulation for Point-to-Point Application
Description:
In this paper, the design and simulation of rectangular microstrip antenna arrays for improving antenna gain is performed for point-to-point application.
The proposed design is composed of four elements microstrip antenna with an array configuration operating at 5.
8 GHz.
Each element is constructed from four truncated arrays radiating elements and an inclined slot on each patch which capable to achieve circular polarized capability.
The design of the 2x1 and 2x2 of rectangular microstrip array antenna was implemented from the designed of single rectangular patch antenna as the basic building element.
The designed 2x1 and 2x2 array were fed by microstrip transmission line which applied a technique of quarter wave impedance matching.
The antenna design was etched on Rogers RT 5880 substrate with 2.
1 and 1.
53 mm of dielectric constant and thickness respectively.
All the designed structure were simulated in CST software.
The main results of the designed antennas were compared in terms of gain, axial ratio and return loss.
Based on the return loss simulation results, the designed antennas resonated exactly at the desired resonant frequency of 5.
8 GHz which indicates good antenna designs.
Compared to the single patch antenna having an antenna gain of 8.
26 dB, the 2x1 and 2x2 arrays achieved a gain of 10.
24 dB and 13.
29 dB respectively.
The results show that the designed rectangular microstrip antenna arrays have an improved gain performance over the single patch antenna.

Related Results

Magneto-Electric Antenna and Its Application in Geosteering Tool Design
Magneto-Electric Antenna and Its Application in Geosteering Tool Design
Using coil antennae as transmitter and receiver to develop a geosteering tool, one has to increase the spacing between the transmitter and receiver to detect formation boundaries f...
Design of Compact Penta-Band and Hexa-Band Microstrip Antennas
Design of Compact Penta-Band and Hexa-Band Microstrip Antennas
AbstractThis paper presents the design of two multi-band microstrip antennas. The antenna-1 gives Penta-Band and antenna-2 gives Hexa-band in the WLAN band. The frequency bands of ...
Utra-thin single-layered high-efficiency focusing metasurface lens
Utra-thin single-layered high-efficiency focusing metasurface lens
For potential applications of metasurfaces in lens technologies, we propose a cross circularly polarized focusing metasurface which is capable of transforming a circularly polarize...
Bandwidth Enhancement of Rectangular Microstrip Patch Antenna using Defected Ground Structure
Bandwidth Enhancement of Rectangular Microstrip Patch Antenna using Defected Ground Structure
<p>This paper presents the bandwidth enhancement of a Proximity Coupled Feed Rectangular Microstrip Patch Antenna using a new Defected Ground Structure - an ‘inverted SHA’ sh...
Analysis of Wang-Shaped Broadband Microstrip Antenna
Analysis of Wang-Shaped Broadband Microstrip Antenna
Intense study of a Wang Shape Broadband Microstrip Antenna with the explanation of resonant modes is presented in this paper. Modal study is performed by observing surface current ...
Circularly Polarized Printed MIMO Antenna for 5G Applications
Circularly Polarized Printed MIMO Antenna for 5G Applications
Abstract This study provides a proposal for printed circularly polarized MIMO 5G antenna with four ports that are suitable for enhanced impedance bandwidth. The proposed ci...
Design and Implementation of a Shined Length Periodic Microstrip Antena for 2.4 GHz and 5.8 GHz Double Wi-Fi
Design and Implementation of a Shined Length Periodic Microstrip Antena for 2.4 GHz and 5.8 GHz Double Wi-Fi
This research aims to design and implement a twin slit rectangular microstrip antenna for 2.4 GHz and 5.8 GHz dual-band Wi-Fi using CST Studio Suite 2019 software and in antenna me...
Design of a broadband and high-gain shared-aperture fabry-perot resonator magneto-electric microstrip antenna
Design of a broadband and high-gain shared-aperture fabry-perot resonator magneto-electric microstrip antenna
The demands for highly directive antennas are becoming more stringent, especially in microwave regions. Traditional ways to enhance the antenna gain such as reflectors, dielectric ...

Back to Top