MIMO Antenna Design and Optimization with Enhanced Bandwidth for Wireless Applications

Authors

  • Mekala Harinath Reddy
  • D. Sheela

DOI:

https://doi.org/10.26636/jtit.2020.145520

Keywords:

HFSS, metamaterial, mutual coupling, permittivit, reflection coefficient

Abstract

This paper demonstrates a compact MIMO (Multi Input Multi Output) fractal type antenna for ultra-wide band applications. The proposed antenna is manufactured on a lowcost substrate material and the design is analyzed for various iterations in terms of reflection coefficient, gain, and bandwidth. The 50 Ω transmission line feed is used for both fractal patches and a metamaterial structure is used as the ground plane. The proposed design achieved a wide-band frequency response between 5.8 and 15 GHz, with the reflection coefficient of less than –10 dB. Reduced mutual coupling, positive gain and stable radiation patterns were observed throughout the operating band as well. The bandwidth of 9.2 GHz is achieved with the use of a metamaterial structure on the ground plane. The ECC and diversity gain obtained prove the excellent diversity performance of the antenna. The design was simulated using HFSS software and was tested in a lab

Downloads

Download data is not yet available.

Downloads

Published

2020-12-30

Issue

Section

ARTICLES FROM THIS ISSUE

How to Cite

[1]
M. H. Reddy and D. Sheela, “MIMO Antenna Design and Optimization with Enhanced Bandwidth for Wireless Applications”, JTIT, vol. 82, no. 4, pp. 22–26, Dec. 2020, doi: 10.26636/jtit.2020.145520.