Optimizing Microstrip Patch Antenna Design for Robotics Applications

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Auteur principal: Mahmoud, Shakir Wahab
Format: Recurso digital
Langue:anglo-saxon (environ 450-1100), ancien anglais
Publié: Zenodo 2025
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author Mahmoud, Shakir Wahab
author_facet Mahmoud, Shakir Wahab
contents <div> <div> <div> <div> <div> <div> <div> <div> <div> <div> <p>Simple design and manufacture have made microstrip patch antennas the possible preference in robotics. These antennas possess very narrow bandwidth and are low profile with very little conformality, thus being suitable for diverse applications in robotics. This presentation shows a numeric study on the newly designed rectangular microstrip patch antenna investigated by finite element method using COMSOL software. The main feed point for the antenna is within a small rectangle on the patch, and analyses on far field radiation, electric field, and impedance were performed. The impedance was set as 50 for the antenna, and the selected frequency range was 1.3-1.7 GHz. The research was very useful for scientific researchers in robotics because it provides the potential use and performance of microstrip patch antennas for different robotic applications. This numerical analysis of this microstrip patch will be of great advantage in antenna design and implementations in robotics. The simple design, low cost, narrow bandwidth, and favorable behavioral understanding it adds towards using this type of antenna would results to many robotics applications-qualified research in robotic context.</p> </div> </div> </div> </div> </div> </div> </div> </div> </div> </div> <div> <div> </div> </div>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_15349761
institution Zenodo
language ang
publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle Optimizing Microstrip Patch Antenna Design for Robotics Applications
Mahmoud, Shakir Wahab
Robotics, Patch antenna, COMSOL, FEA
<div> <div> <div> <div> <div> <div> <div> <div> <div> <div> <p>Simple design and manufacture have made microstrip patch antennas the possible preference in robotics. These antennas possess very narrow bandwidth and are low profile with very little conformality, thus being suitable for diverse applications in robotics. This presentation shows a numeric study on the newly designed rectangular microstrip patch antenna investigated by finite element method using COMSOL software. The main feed point for the antenna is within a small rectangle on the patch, and analyses on far field radiation, electric field, and impedance were performed. The impedance was set as 50 for the antenna, and the selected frequency range was 1.3-1.7 GHz. The research was very useful for scientific researchers in robotics because it provides the potential use and performance of microstrip patch antennas for different robotic applications. This numerical analysis of this microstrip patch will be of great advantage in antenna design and implementations in robotics. The simple design, low cost, narrow bandwidth, and favorable behavioral understanding it adds towards using this type of antenna would results to many robotics applications-qualified research in robotic context.</p> </div> </div> </div> </div> </div> </div> </div> </div> </div> </div> <div> <div> </div> </div>
title Optimizing Microstrip Patch Antenna Design for Robotics Applications
topic Robotics, Patch antenna, COMSOL, FEA
url https://doi.org/10.5281/zenodo.15349761