Triangular Patch Antenna Using Coplanar Waveguide and DGS for 5G Communication

Closed

Nurhayati Nurhayati, Mohammad Iyo Agus Setyono, Alga Mardhiarta Yundha Tama, Mohd Najib Mohd Yasin

2022 Proceeding - IEEE International Conference on Communication, Networks and Satellite, COMNETSAT 2022 Conference paper Cited by 2 Quartile

Abstract

This article proposes a new design of a triangular microstrip patch antenna using a coplanar waveguide and defected ground surface technique for use in 28 GHz 5G network communication. The antenna is designed using a Rogers RT 5880 substrate with a relative permittivity (ϵr) of 2.2, a substrate height (h) of 0.5 mm, and a loss tangent (tan) of 1.9. The simulation results that have been carried out show the return loss of -19.770 dB and a VSWR of 1.229. The working frequency of this antenna is 27.85 GHz and the frequency of the setting is obtained by adjusting the length and width of the feed and the dimensions of the patch on the antenna. The antenna bandwidth obtained is 2.036 GHz. © 2022 IEEE.

Affiliations

Universitas Negeri Surabaya, Department of Electrical Engineering, Surabaya, Indonesia; Universiti Malaysia Perlis (UniMAP), Faculty of Electronic Engineering Technology, Arau, Perlis, 02600, Malaysia

Research at a Glance

Premium content — register to unlock

Research at a Glance

Register to unlock

Topics & SDG Alignment

Premium content — register to unlock

Topics & SDG Alignment

Register to unlock

Collaboration

Premium content — register to unlock

Collaboration

Register to unlock

Author Profile (Selected)

Premium content — register to unlock

Author Profile (Selected)

Register to unlock

References Overview

Premium content — register to unlock

References Overview

Register to unlock

Journal & Source

Premium content — register to unlock

Journal & Source

Register to unlock

Metadata & Integrity

Premium content — register to unlock

Metadata & Integrity

Register to unlock