Design and implementation of a quad element patch antenna at 5.8 GHz

Title Design and implementation of a quad element patch antenna at 5.8 GHz
Author Sobhani, M. R., Majidi, Negar, İmeci, Ş. T.
Publication Date: 2018-10
Publication Place - The Applied Computational Electromagnetics Society
Subject 2x2 microstrip patch antenna, 5.8 GHz antenna, Quad microstrip patch antenna
Type Periodical
Language English
Digital Yes
Manuscript No
Library: Özyeğin University
Library Asset ID 1054-4887
Record ID f413a276-23db-4ee2-a257-16bc777fbfff
Date 2018-10
Sample Text This paper presents simulation and experimental verification of a quad microstrip patch antenna that operates at 5.8 GHz. Sonnet antenna design software was used to simulate the performance of the antenna. To reduce the design's complexity and the computational load, the antenna and the feeding lines were simulated separately. An optimization was done for each subpart to get the optimum desired results. Finally, all the subparts were merged and the final structure was simulated to check the performance. A prototype of the antenna was fabricated on a double-sided PCB substrate (relative permittivity=10.2, thickness=1.28 mm) using a PCB milling machine. The S11 of -14 dB and -18.8 dB and maximum gain of 6.2 dB and 4.2 dB were obtained, from the simulation and experimental measurements, respectively.
Cilt 33
View in source Özyeğin University Özyeğin Üniversitesi
Özyeğin Üniversitesi Özyeğin University

Design and implementation of a quad element patch antenna at 5.8 GHz

Author Sobhani, M. R., Majidi, Negar, İmeci, Ş. T.
Publication Date 2018-10
Publication Place - The Applied Computational Electromagnetics Society
Subject 2x2 microstrip patch antenna, 5.8 GHz antenna, Quad microstrip patch antenna
Type Periodical
Language English
Digital Yes
Manuscript No
Library Özyeğin University
Library Asset ID 1054-4887
Record ID f413a276-23db-4ee2-a257-16bc777fbfff
Date 2018-10
Sample Text This paper presents simulation and experimental verification of a quad microstrip patch antenna that operates at 5.8 GHz. Sonnet antenna design software was used to simulate the performance of the antenna. To reduce the design's complexity and the computational load, the antenna and the feeding lines were simulated separately. An optimization was done for each subpart to get the optimum desired results. Finally, all the subparts were merged and the final structure was simulated to check the performance. A prototype of the antenna was fabricated on a double-sided PCB substrate (relative permittivity=10.2, thickness=1.28 mm) using a PCB milling machine. The S11 of -14 dB and -18.8 dB and maximum gain of 6.2 dB and 4.2 dB were obtained, from the simulation and experimental measurements, respectively.
Cilt 33
Özyeğin Üniversitesi
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