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A Novel Triangular Shaped UWB Fractal Antenna Using Circular Slot

A Novel Triangular Shaped UWB Fractal Antenna Using Circular Slot Abstract The article presents the design of triangular shaped fractal based antenna with circular slot for ultra wideband (UWB) application. The antenna is fed using microstrip line and has overall dimension of 24×24×1.6 mm 3 . The proposed antenna is covering the wide frequency bandwidth of 2.99–11.16 GHz and is achieved using simple fractal based triangular-circular geometries and asymmetrical ground plane. The antenna is designed and parametrical studies are performed using method of moment (MOM) based Full Wave Electromagnetic (EM) software Simulator Zeland IE3D. The prototype of proposed antenna is fabricated and tested to compare the simulated and measured results of various antenna parameters. The antenna has good impedance bandwidth, nearly constant gain and stable radiation pattern. Measured return loss shows fair agreement with simulated one. Also measured group delay variation obtained is less than 1.0 ns, which proves good time domain behavior of the proposed antenna. http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png Frequenz de Gruyter

A Novel Triangular Shaped UWB Fractal Antenna Using Circular Slot

Frequenz , Volume 70 (8) – Mar 1, 2016

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Publisher
de Gruyter
Copyright
Copyright © 2016 by the
ISSN
0016-1136
eISSN
2191-6349
DOI
10.1515/freq-2015-0110
Publisher site
See Article on Publisher Site

Abstract

Abstract The article presents the design of triangular shaped fractal based antenna with circular slot for ultra wideband (UWB) application. The antenna is fed using microstrip line and has overall dimension of 24×24×1.6 mm 3 . The proposed antenna is covering the wide frequency bandwidth of 2.99–11.16 GHz and is achieved using simple fractal based triangular-circular geometries and asymmetrical ground plane. The antenna is designed and parametrical studies are performed using method of moment (MOM) based Full Wave Electromagnetic (EM) software Simulator Zeland IE3D. The prototype of proposed antenna is fabricated and tested to compare the simulated and measured results of various antenna parameters. The antenna has good impedance bandwidth, nearly constant gain and stable radiation pattern. Measured return loss shows fair agreement with simulated one. Also measured group delay variation obtained is less than 1.0 ns, which proves good time domain behavior of the proposed antenna.

Journal

Frequenzde Gruyter

Published: Mar 1, 2016

References