Please use this identifier to cite or link to this item: https://repository.sustech.edu/handle/123456789/27941
Title: Design of Micro strip Antenna for Cognitive Radio System Application
Other Titles: تصميم هوائي شريطي دقيق لتطبيقات نظم الراديو المدرك
Authors: Abd Alrheem, Hiba Awad Osman
Supervisor, -Salaheldin Mohamed Ibrahim Edam
Keywords: Engineering
Electronics Engineering
Telecom Engineering
Micro strip Antenna
Cognitive Radio
System Application
Issue Date: 1-Dec-2019
Publisher: Sudan University of Science & Technology
Citation: Abd Alrheem, Hiba Awad Osman .Design of Micro strip Antenna for Cognitive Radio System Application \ Hiba Awad Osman Abd Alrheem ; Salaheldin Mohamed Ibrahim Edam .- Khartoum:Sudan University of Science & Technology,College of Engineering,2019.-82p.:ill.;28cm.-M.Sc.
Abstract: A micro strip antenna with multiple parasitic patches for Cognitive Radio Network applications is presented to enhance the bandwidth. Multiple resonances are used for the design of antenna, with a view to broaden bandwidth. Microstrip antennas are widely used in many applications due to their low profile, low cost and ease of fabrication .In some applications it is required to have a dual band characteristics instead of single band. These characteristics can be obtained by coupling multiple radiating elements. The proposed antenna is designed and efficiently operates at 1 GHZ and 3 GHZ resonant frequencies for Cognitive radio applications; the antenna and design with pre-determined and calculated parameters by using specific equations. The desired resonant frequencies and dielectric constant of the substrate are known or selected initially based on the applications which this antenna will be used in its (WLAN).After that the calculated or selected dimensions and parameters were simulated by CST simulator. Throughput, return loss, VSWR, input impedance, Gain and radiation pattern have been improved, a model of antenna has been fabricated and its radiation patterns, return losses were achieved which shows fine consistency with simulated results then these theoretical results were compared with the desired results, The simulation results were evaluated in term of and the dimensions are optimized to achieve the exact operating frequencies.
Description: Thesis
URI: https://repository.sustech.edu/handle/123456789/27941
Appears in Collections:Masters Dissertations : Engineering

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