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research-article

Radiation Pattern Analysis of Uniform Rectangular Planar Arrays for Millimeter Wave Communications: Comparative Study with Uniform Linear Arrays

Published: 01 May 2020 Publication History

Abstract

Radiation patterns of a Uniform Rectangular Planar Array deployed for millimeter wave communications are analyzed. Millimeter wave, as the name suggests, works on very high frequency bands i.e. 28, 38 and 72 GHz bands resulting in reduced antenna size. The size of these antennas are in the range of millimeters and therefore they are integrated on-chip. They can also be steered to achieve very high directivity and channel capacity. Directional antennas are implemented using beamsteering in millimeter wave communications to achieve very high data rates and also high capacity. The data rates are reported to increase by around 40 times as compared to off-chip or external antennas. In this paper, beam patterns for a uniform linear array and a uniform rectangular planar array with beamsteering are analyzed and compared.

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  • (2023)Spectrum-Energy-Economy Efficiency Analysis of B5G Wireless Communication Systems With Separated Indoor/Outdoor ScenariosIEEE Transactions on Wireless Communications10.1109/TWC.2023.327326122:12(9718-9731)Online publication date: 1-Dec-2023

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            Published In

            cover image Wireless Personal Communications: An International Journal
            Wireless Personal Communications: An International Journal  Volume 112, Issue 2
            May 2020
            649 pages

            Publisher

            Kluwer Academic Publishers

            United States

            Publication History

            Published: 01 May 2020

            Author Tags

            1. Array gain
            2. Beamwidth
            3. Beamsteering
            4. Antenna array

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            • (2023)Spectrum-Energy-Economy Efficiency Analysis of B5G Wireless Communication Systems With Separated Indoor/Outdoor ScenariosIEEE Transactions on Wireless Communications10.1109/TWC.2023.327326122:12(9718-9731)Online publication date: 1-Dec-2023

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