This paper presents the design of a planar antenna for super wideband applications. The proposed antenna design consists of a wine glass shaped patch radiator, a tapered microstrip feed line, and a groove-shaped ground plane. From the presented results it is observed that the use of a tapered feed line with a groove-shaped ground plane tends to achieve wide impedance bandwidth. Therefore, the proposed antenna configuration offers a ratio bandwidth of 11.3 : 1 in the frequency range of 3.1-35 GHz. Furthermore, the proposed planar antenna offers an acceptable gain with good radiation characteristics for the entire operating bandwidth.

A compact planar antenna for super wideband applications / Rafique, U.; Khalil, H.; Agarwal, S.. - (2019), pp. 3256-3261. ( 2019 Photonics and Electromagnetics Research Symposium - Fall, PIERS - Fall 2019 China 2019) [10.1109/PIERS-Fall48861.2019.9021605].

A compact planar antenna for super wideband applications

Agarwal S.
2019

Abstract

This paper presents the design of a planar antenna for super wideband applications. The proposed antenna design consists of a wine glass shaped patch radiator, a tapered microstrip feed line, and a groove-shaped ground plane. From the presented results it is observed that the use of a tapered feed line with a groove-shaped ground plane tends to achieve wide impedance bandwidth. Therefore, the proposed antenna configuration offers a ratio bandwidth of 11.3 : 1 in the frequency range of 3.1-35 GHz. Furthermore, the proposed planar antenna offers an acceptable gain with good radiation characteristics for the entire operating bandwidth.
2019
9781728153049
A compact planar antenna for super wideband applications / Rafique, U.; Khalil, H.; Agarwal, S.. - (2019), pp. 3256-3261. ( 2019 Photonics and Electromagnetics Research Symposium - Fall, PIERS - Fall 2019 China 2019) [10.1109/PIERS-Fall48861.2019.9021605].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/995751
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