Development of a Pin Diode-Based Beam-Switching Single-Layer Reflectarray Antenna

Author:

Abbasi Muhammad Inam1ORCID,Ismail Muhammad Yusof2ORCID,Kamarudin Muhammad Ramlee2ORCID

Affiliation:

1. Centre for Telecommunication Research & Innovation (CETRI), Faculty of Electrical and Electronic Engineering Technology (FTKEE), Universiti Teknikal Malaysia Melaka (UTeM), Melaka 76100, Malaysia

2. Universiti Tun Hussein Onn Malaysia (UTHM), 86400 Batu Pahat, Johor, Malaysia

Abstract

This paper presents a practical demonstration for the design and development of a switchable planar reflectarray using PIN diodes in the X-band frequency range. Waveguide scattering parameter measurements for the unit cells and far-field measurements of the periodic reflectarrays have been carried out to verify the predicted results. Reflectarray unit cell measurements demonstrated a frequency tunability of 0.36 GHz with a dynamic phase range of 226°. On the other hand, the designed 6 × 6 periodic reflectarray has been shown to achieve beam switching from +6° to −6° with different switching states of PIN diodes. This type of beam switching can be used in satellite communication for specific region coverage.

Funder

Ministry of Higher Education, Malaysia

Publisher

Hindawi Limited

Subject

Electrical and Electronic Engineering

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1. Design and Performance Analysis of Dual Resonance Millimeter Wave Reflectarray Unit Cells for 5G Communication Systems;2024 International Conference on Engineering & Computing Technologies (ICECT);2024-05-23

2. Dielectric Material Characterization for Reflectarray Antennas Designed at Sub-6GHz and Millimeter Wave Bands of 5G;2023 IEEE 16th Malaysia International Conference on Communication (MICC);2023-12-10

3. Electronically Controlled Frequency Agile Beam Scanning Reflectarray Antenna with Integrated Control Unit;JOURNAL OF HIGH-FREQUENCY COMMUNICATION TECHNOLOGIES;2023-03-16

4. Recent Advances in Design and Signal Processing for Antenna Arrays 2020;International Journal of Antennas and Propagation;2023-02-03

5. Linearly Polarized Millimeter Wave Reflectarray with Mutual Coupling Optimization;Computers, Materials & Continua;2022

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