Super wideband printed monopole antenna for ultra wideband applications

Author:

Palaniswamy Sandeep Kumar,Kanagasabai Malathi,Arun Kumar Shrivastav,Alsath M. Gulam Nabi,Velan Sangeetha,Pakkathillam Jayaram Kizhekke

Abstract

This paper presents the design, testing, and analysis of a clover structured monopole antenna for super wideband applications. The proposed antenna has a wide impedance bandwidth (−10 dB bandwidth) from 1.9 GHz to frequency over 30 GHz. The clover shaped antenna with a compact size of 50 mm × 45 mm is designed and fabricated on an FR4 substrate with a thickness of 1.6 mm. Parametric study has been performed by varying the parameters of the clover to obtain an optimum wide band characteristics. Furthermore, the prototype introduces a method of achieving super wide bandwidth by deploying fusion of elliptical patch geometries (clover shaped) with a semi elliptical ground plane, loaded with a V-cut at the ground. The proposed antenna has a 14 dB bandwidth from 5.9 to 13.1 GHz, which is suitable for ultra wideband (UWB) outdoor propagation. The prototype is experimentally validated for frequencies within and greater than UWB. Transfer function, impulse response, and group delay has been plotted in order to address the time domain characteristics of the proposed antenna with fidelity factor values. The possible applications cover wireless local area network, C-band, Ku-band, K-band operations, Worldwide Interoperability for Microwave Access, and Wireless USB.

Publisher

Cambridge University Press (CUP)

Subject

Electrical and Electronic Engineering

Reference26 articles.

1. Small Printed Ultrawideband Antenna With Reduced Ground Plane Effect

2. Design of a Miniaturization Printed Circular-Slot UWB Antenna by the Half-Cutting Method

3. A novel compact printed circular antenna for very ultrawideband applications

4. A New Super Wideband Fractal Microstrip Antenna

5. Federal Communications Commission: “First report and order”, Revision of part 15 of the commission's rules regarding ultrawideband transmission systems, February 2002.

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