2022Unpublished venueRequires access

Low‐Cost Beam‐Reconfigurable Directional Antennas for Advanced Communications

Qi Luo, Steven Gao, Xue‐xia Yang, Josaphat Tetuko Sri Sumantyo

Open publisher page 10 citations

Abstract

This chapter discusses different techniques to realize low-cost beam-reconfigur-able and multi-beam directional antennas. Generally speaking, the cost of beam-reconfigurable high-directivity antennas can be reduced by addressing two of their main facets: decreasing the number of active antenna elements and avoiding the use of expensive RF components such as phase shifters. The design concepts of active frequency selective surfaces, antennas with parasitic elements, lens antennas, and antennas with metasurfaces are presented to decrease the number of active antenna elements. The design concepts of low-bit reflectarrays and transmitarrays, leaky-wave antennas, multi-beam antennas, tunable materials based array antennas, mechanical beam-steering antennas, and low-cost beamforming networks are presented to avoid the use of expensive phase shifters as essential components in array antennas. These different approaches and their specific techniques are discussed with examples and simulation or measurement results.

About this research paper

What this paper is about

This chapter discusses different techniques to realize low-cost beam-reconfigur-able and multi-beam directional antennas. Generally speaking, the cost of beam-reconfigurable high-directivity antennas can be reduced by addressing two of their main facets: decreasing the number of active antenna elements and avoiding the use of expensive RF components such as phase shifters. The design concepts of active frequency selective surfaces, antennas with parasitic elements, lens antennas, and antennas with metasurfaces are presented to decrease the number of active antenna elements. The design concepts of low-bit reflectarrays and transmitarrays, leaky-wave antennas, multi-beam antennas, tunable materials based array antennas, mechanical beam-steering antennas, and low-cost beamforming networks are presented to avoid the use of expensive phase shifters as essential components in array antennas. These different approaches and their specific techniques are discussed with examples and simulation or measurement results.

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OpenAlex reports 10 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

This chapter discusses different techniques to realize low-cost beam-reconfigur-able and multi-beam directional antennas. Generally speaking, the cost of beam-reconfigurable high-directivity antennas can be reduced by addressing two of their main facets: decreasing the number of active antenna elements and avoiding the use of expensive RF components such as phase shifters. The design concepts of active frequency selective surfaces, antennas with parasitic elements, lens antennas, and antennas with metasurfaces are presented to decrease the number of active antenna elements. The design concepts of low-bit reflectarrays and transmitarrays, leaky-wave antennas, multi-beam antennas, tunable materials based array antennas, mechanical beam-steering antennas, and low-cost beamforming networks are presented to avoid the use of expensive phase shifters as essential components in array antennas. These different approaches and their specific techniques are discussed with examples and simulation or measurement results.

Key concepts: Reconfigurable antenna, Directivity, Smart antenna, Directional antenna, Beamforming, Reflective array antenna, Conformal antenna, Antenna (radio)

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