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Intelligent Metasurface Layer for Direct Antenna Amplitude Modulation Scheme

  • Marwah Haleem Jwair
  • , Taha A. Elwi
  • , Mohammad Alibakhshikenari
  • , Bal S. Virdee
  • , Hayder Almizan
  • , Zaid A.Abdul Hassain
  • , Syed Mansoor Ali
  • , Lida Kouhalvandi
  • , Patrizia Livreri
  • , Nurhan Turker Tokan
  • , Giovanni Pau
  • , Chan Hwang See
  • , Ernesto Limiti
  • Al-Nahrain University
  • International Applied and Theoretical Research Center (IATRC)
  • Department of Signal Theory and Communications
  • Universidad Carlos III de Madrid
  • London Metropolitan University
  • University of Kufa
  • Mustansiriyah University
  • College of Sciences
  • Dogus University
  • University of Palermo
  • Yildiz Technical University
  • Kore University
  • Edinburgh Napier University
  • University of Rome "Tor Vergata"

Research output: Contribution to a Journal (Peer & Non Peer)Articlepeer-review

31 Citations (Scopus)

Abstract

This paper proposes a transmitter system based on direct antenna amplitude-shift keying modulation for point-to-point microwave link. The proposed system is formed from a conventional microstrip antenna and a novel reconfigurable metasurface layer (RMSL). The proposed RMSL has two states: OFF (or Logic-0) and ON (or Logic-1) where each switching scenario provides a certain gain level. This is achieved through controlling the proposed RMSL switching configuration to control the amplitude of the transmitted signal. Results show that such a system can modulate electromagnetic signals directly by varying the antenna's gain from about 2 dBi for Logic-0 to 13.8 dBi for Logic-1. An analytical model-based ray-tracing technique is invoked to explain the operation of the proposed antenna system. To demonstrate the operation of the proposed system, both the antenna and the RMSL structures were fabricated, assembled and tested. Measurements show good agreement with the theoretical model and numerical simulations obtained using CST Microwave Studio software package. The overall system has dimensions of 25× 25 × 7.3 cm3.

Original languageEnglish
Pages (from-to)77506-77517
Number of pages12
JournalIEEE Access
Volume11
DOIs
Publication statusPublished - 2023
Externally publishedYes

Keywords

  • ASK modulation
  • direct antenna modulation
  • microstrip antenna
  • reconfigurable metasurface

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