The design of nine element quasi microstrip log periodic antenna

This paper described the design, simulation and fabrication of the inset feed log periodic antenna with nine element. The antennas have been modeled using microstrip lines and S parameter data from individual single element. The data is extracted from the momentum simulation and combined with the mi...

Full description

Bibliographic Details
Main Authors: A. Rahim, Mohamad Kamal, Gardner, P.
Format: Book Section
Published: IEEE 2004
Subjects:
Online Access:http://eprints.utm.my/7137/
_version_ 1848891410026070016
author A. Rahim, Mohamad Kamal
Gardner, P.
author_facet A. Rahim, Mohamad Kamal
Gardner, P.
author_sort A. Rahim, Mohamad Kamal
building UTeM Institutional Repository
collection Online Access
description This paper described the design, simulation and fabrication of the inset feed log periodic antenna with nine element. The antennas have been modeled using microstrip lines and S parameter data from individual single element. The data is extracted from the momentum simulation and combined with the microstrip transmission line. The properties of antennas such as bandwidth, gain, cross-polar isolation and half power beamwidth have been investigated and compared between simulation and measurements.A bandwidth up to 51% is achieved by using nine element arrays. The cross-polar isolation of the log periodic antenna is in the range of 10 to 30 dB. The typical half power beamwidth (HPBW) of the log periodic antenna is 40° for E plane and 60° for H plane. The gain of the antenna relative to the dipole antenna ranges from -3 dB to 5 dB © 2004 IEEE.
first_indexed 2025-11-15T20:57:31Z
format Book Section
id utm-7137
institution Universiti Teknologi Malaysia
institution_category Local University
last_indexed 2025-11-15T20:57:31Z
publishDate 2004
publisher IEEE
recordtype eprints
repository_type Digital Repository
spelling utm-71372017-07-25T04:08:47Z http://eprints.utm.my/7137/ The design of nine element quasi microstrip log periodic antenna A. Rahim, Mohamad Kamal Gardner, P. TK Electrical engineering. Electronics Nuclear engineering This paper described the design, simulation and fabrication of the inset feed log periodic antenna with nine element. The antennas have been modeled using microstrip lines and S parameter data from individual single element. The data is extracted from the momentum simulation and combined with the microstrip transmission line. The properties of antennas such as bandwidth, gain, cross-polar isolation and half power beamwidth have been investigated and compared between simulation and measurements.A bandwidth up to 51% is achieved by using nine element arrays. The cross-polar isolation of the log periodic antenna is in the range of 10 to 30 dB. The typical half power beamwidth (HPBW) of the log periodic antenna is 40° for E plane and 60° for H plane. The gain of the antenna relative to the dipole antenna ranges from -3 dB to 5 dB © 2004 IEEE. IEEE 2004-10-05 Book Section PeerReviewed A. Rahim, Mohamad Kamal and Gardner, P. (2004) The design of nine element quasi microstrip log periodic antenna. In: Proceedings 2004 RF and Microwave Conference, RFM 2004. IEEE, USA, pp. 132-135. ISBN 078038671X http://ieeexplore.ieee.org/document/1411094/ 10.1109/RFM.2004.1411094
spellingShingle TK Electrical engineering. Electronics Nuclear engineering
A. Rahim, Mohamad Kamal
Gardner, P.
The design of nine element quasi microstrip log periodic antenna
title The design of nine element quasi microstrip log periodic antenna
title_full The design of nine element quasi microstrip log periodic antenna
title_fullStr The design of nine element quasi microstrip log periodic antenna
title_full_unstemmed The design of nine element quasi microstrip log periodic antenna
title_short The design of nine element quasi microstrip log periodic antenna
title_sort design of nine element quasi microstrip log periodic antenna
topic TK Electrical engineering. Electronics Nuclear engineering
url http://eprints.utm.my/7137/
http://eprints.utm.my/7137/
http://eprints.utm.my/7137/