Integrated reconfigurable multiple-input–multiple-output antenna system with an ultra-wideband sensing antenna for cognitive radio platforms

Rifaqat Hussain, Mohammad S. Sharawi

Research output: Contribution to journalArticlepeer-review

43 Scopus citations

Abstract

© The Institution of Engineering and Technology 2015. A compact, novel multi-mode, multi-band frequency reconfigurable multiple-input-multiple-output (MIMO) antenna system, integrated with ultra-wideband (UWB) sensing antenna, is presented. The developed model can be used as a complete antenna platform for cognitive radio applications. The antenna system is developed on a single substrate area of dimensions 65 × 120 mm$^{2}$. The proposed sensing antenna is used to cover a wide range of frequency bands from 710 to 3600 MHz. The frequency reconfigurable dual-element MIMO antenna is integrated with P-type, intrinsic, N-type (PIN) diodes for frequency agility. Different modes of selection are used for the MIMO antenna system reconfigurability to support different wireless system standards. The proposed MIMO antenna configuration is used to cover various frequency bands from 755 to 3450 MHz. The complete system comprising the multi-band reconfigurable MIMO antennas and UWB sensing antenna for cognitive radio applications is proposed with a compact form factor.
Original languageEnglish (US)
Pages (from-to)940-947
Number of pages8
JournalIET Microwaves, Antennas & Propagation
Volume9
Issue number9
DOIs
StatePublished - Jun 18 2015
Externally publishedYes

Bibliographical note

KAUST Repository Item: Exported on 2020-10-01
Acknowledgements: The authors acknowledge the support provided by the King AbdulAziz City for Science and Technology (KACST) and the Scienceand Technology unit at King Fahd University of Petroleum andMinerals (KFUPM) for funding this work through the project No.12-ELE3001-04, as part of the National Science, Technology andInnovation Plan (NSTIP). Also, they acknowledge the help ofProf. A. Shamim of KAUST for granting access to themeasurement facility.
This publication acknowledges KAUST support, but has no KAUST affiliated authors.

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