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Indian Journal of Public Health Research & Development
Year : 2017, Volume : 8, Issue : 3
First page : ( 656) Last page : ( 661)
Print ISSN : 0976-0245. Online ISSN : 0976-5506.
Article DOI : 10.5958/0976-5506.2017.00301.1

Design of MML Reduction in Super High Frequency Antenna Using HFSS for Wireless Communication System

Parasuraman S1,*, Ramesh G P2

1Research Scholar, ECE Department, St. Peter's University, Chennai, Tamil Nadu, India

2Professor and Head, ECE Department, St. Peter's University, Chennai, Tamil Nadu, India

*Corresponding author: S Parasuraman, Research Scholar, ECE Department, St. Peter's University, Chennai, Tamil Nadu, Indiaparasuramansvlsi@gmail.com, rameshgp@yahoo.com

Online published on 30 October, 2017.

Abstract

In the world of modern wireless communication, engineer who needs to work in the communication field needs an essential comprehension of the parts of electromagnetic radiation, antennas, and related propagation phenomena. Antenna is an essential part of any wireless communication system as it changes over the electronic signals (propagating in the RF Transreceiver) into Electromagnetic Waves (Propagating in the free space) proficiently with minimum loss. In this paper, cylindrical half wavelength dipole antenna for super high frequency satellite communication system has been designed. Perfect Electric Conductor (PEC) and air material are used in this design. The main goal of this paper is to minimizing the mismatch loss. An antenna's impedance is essential for reducing the impedance mismatch-loss. A badly matched antenna will not radiate power. If the VSWR value is equal to 1, there is no mismatch loss in the antenna. If the VSWR value is greater than 1, there is more mismatch loss. Dipole antenna will be designed and analyzed using the HFSS simulation software by Ansoft. The frequency band of 29.182GHZ has been used in this dipole antenna design. The frequency band of 3–30GHZ is known as super high frequency antennas.

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Keywords

Voltage Standing Wave Ratio (VSWR), Impedance Matching, High Frequency Structure Simulator (HFSS).

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