A Compact Slotted UWB Antenna Based on Characteristics Mode Theory for Wireless Applications

Author:

Kempanna Subhash Bodaguru1ORCID,Biradar Rajashekhar C.1ORCID,Ali Tanweer2ORCID,Jhunjhunwala Vikash Kumar3,Soman Sarun3,Pathan Sameena4ORCID

Affiliation:

1. School of ECE, REVA University, Bangalore 560064, India

2. Department of Electronics and Communication Engineering, Manipal Institute of Technology, Manipal Academy of Higher Education, Manipal 576104, India

3. Department of Electrical and Electronics Engineering, Manipal Institute of Technology, Manipal Academy of Higher Education, Manipal 576104, India

4. Department of Information and Communication Technology, Manipal Institute of Technology, Manipal Academy of Higher Education, Manipal 576104, India

Abstract

The development of electronic systems and wireless communication has led to a proportional increase in data traffic over time. One potential solution for alleviating data congestion is to augment the bandwidth capacity. This study presents a novel asymmetric circular slotted semi-circle-shaped monopole antenna design using a defective ground structure. The extended ultrawide bandwidth is achieved by implementing a design where the semi-circle radiator is etched in a specific asymmetric circular slot. This involves etching a circle with a radius of 1.25 mm at the center of the radiator, as well as a succession of circles with a radius of 0.75 mm along the edges of the radiator. In addition, the ground plane is situated at a lower elevation and features a U-shaped truncation that has been etched onto its surface. The expansion of the impedance bandwidth can be accomplished by making adjustments to the radiator and ground plane. The UWB antenna under consideration possesses a geometric configuration of 21.6 × 20.8 × 1.6 mm3 and the antenna is fabricated using an FR-4 glass epoxy substrate. The UWB antenna operates throughout the frequency range of 2.2–16.5 GHz, exhibiting a gain of at least 3.45 dBi across the entire impedance bandwidth and the maximum peak gain of 9.57 dBi achieved at the mid-resonance frequency of 10.5 GHz. The investigation of the antenna’s physical properties is conducted utilizing characteristic mode analysis. The investigation also includes an analysis of the time-domain characteristics, revealing that the group delay was found to be less than 1 ns across the operational frequency range. The predicted and measured findings demonstrate consistency and confirm that the suggested antenna is suitable for electronic systems and wireless applications.

Publisher

MDPI AG

Subject

Industrial and Manufacturing Engineering,Mechanical Engineering,Engineering (miscellaneous)

Reference22 articles.

1. A novel compact fractal UWB antenna with dual band notched characteristics;Devana;Analog. Integr. Circuits Signal Process.,2019

2. Galvan-Tejada, G.M., Peyrot-Solis, M.A., and Aguilar, H.J. (2017). Ultra Wideband Antennas: Design, Methodologies, and Performance, CRC Press.

3. (2002). Revision of part 15 of the communication’s rules regarding ultra-wideband transmission systems, Federal communications commission. ET-Docke, 98–153, FCC-02-48.

4. UWB antenna with novel FSS reflector for the enhancement of the gain and bandwidth;Pandhare;Int. J. Microw. Wirel. Technol.,2022

5. Design and implementation of ultra-wide band antenna for partial discharge detection in high voltage power equipment;Uwiringiyimana;IEEE Access,2022

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