Compact wideband tapered-fed printed bow-tie antenna with rectangular edge extension

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Date

2019

Authors

Goksenin Bözdaǧ
Mustafa Seçmen

Journal Title

Journal ISSN

Volume Title

Publisher

John Wiley and Sons Inc. P.O.Box 18667 Newark NJ 07191-8667

Open Access Color

Green Open Access

Yes

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Average
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Top 10%

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Abstract

In this article a wideband printed bow-tie antenna is designed entire band of GPS (L5) PCS IMT-2000 Bluetooth Wi-Fi WiMAX bands and the most of frequency range of UWB. Apart from the traditional designs the proposed antenna includes tapered printed line with a feeding point patch and triangular bows with rectangular edge extensions which makes the antenna more compact. The antenna realized at the frequency band of 1.49-9.5 GHz (more than 6.3:1 ratio bandwidth) has the dimensions of 122 mm × 56 mm (0.61λ <inf>0</inf> × 0.28λ <inf>0</inf> ). According to measurement results the realized gain varies between almost 1 and 6.5 dBi with 4.44 dBi average which are in good agreement with simulation results. Radiation patterns at the lower frequencies of operating band show dipole like radiation pattern with higher cross-pol discrimination levels while they degrade at the higher frequencies due to increase in gain. © 2019 Elsevier B.V. All rights reserved.

Description

Keywords

Bow-tie Antenna, Microstrip Antenna, Tapered Feeding, Wideband Antenna, Antenna Feeders, Bandwidth, Directional Patterns (antenna), Microwave Antennas, Slot Antennas, Ultra-wideband (uwb), Bow-tie Antennas, Feeding Points, Frequency Ranges, Higher Frequencies, Lower Frequencies, Operating Bands, Wide-band, Wideband Antenna, Microstrip Antennas, Antenna feeders, Bandwidth, Directional patterns (antenna), Microwave antennas, Slot antennas, Ultra-wideband (UWB), Bow-tie antennas, Feeding points, Frequency ranges, Higher frequencies, Lower frequencies, Operating bands, Wide-band, Wideband antenna, Microstrip antennas

Fields of Science

0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology

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OpenCitations Citation Count
8

Source

Microwave and Optical Technology Letters

Volume

61

Issue

Start Page

1394

End Page

1399
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CrossRef : 7

Scopus : 8

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Mendeley Readers : 4

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