Hexagonal Monopole Strip Antenna with Rectangular Slot for 100–1000 MHz SFCW GPR Applications

Author:

Pramudita A. A.1,Kurniawan A.2,Suksmono A. Bayu2

Affiliation:

1. Electrical Engineering Department, Unika Atmajaya Jakarta, JL Sudirman 51 Jakarta, Indonesia

2. International Research Centre for Telecommunications and Radar—Indonesian Branch, (IRCTR-IB) STEI - ITB, Jl. Ganesha 10, Bandung 40132, Indonesia

Abstract

A printed ultra wideband (UWB) monopole antenna is proposed for applications on stepped frequency continuous wave (SFCW) ground penetrating radar (GPR) within a frequency range of 100–1000 MHz. The proposed antenna consists of a hexagonal strip line with resistive loading and a rectangular slot that is added to the ground plane side of the printed antenna implemented on FR4 epoxy materials. The resistive loading at the hexagonal monopole is effective to increase bandwidth in the higher frequency region, while the rectangular slot is used to improve bandwidth characteristic in the lower frequency region. This paper investigates the characteristic improvement in the lower frequency region by applying a parametric study on the rectangular slot that is added at the ground plane side of the UWB monopole antenna. Computer simulation was conducted and measurements were carried out to validate the result.

Publisher

Hindawi Limited

Subject

Electrical and Electronic Engineering

Reference8 articles.

1. IEE Radar Sonar, Navigation and Avionics Series,2004

2. RC-Loaded Bow-Tie Antenna for Improved Pulse Radiation

3. Wiley Series,2002

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1. A Microstrip Line Fed Hexagonal Square Shaped Fractal Monopole Antenna for Ultra-Wide Band Applications;Lecture Notes in Electrical Engineering;2022-10-22

2. Miniaturization of Dual Shaped Monopole Antenna for UWB Application;Advances in Communication, Devices and Networking;2022-08-30

3. A compact microstrip feedline printed antenna with perturbed partial ground plane for UWB applications;International Journal of RF and Microwave Computer-Aided Engineering;2021-06-15

4. Design of Shielding System for Impulse Ground Penetrating Radar Applications;Key Engineering Materials;2015-07

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