Development of a Symmetric Metamaterial Absorber With Bandwidth Improvements for 5g Millimeter-Wave Applications

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Date

2022

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Institute of Electrical and Electronics Engineers Inc.

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Green Open Access

No

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Abstract

This study presents the development of a one-layer symmetrical Metamaterial Absorber (MMA) for millimeter-wave (mm-wave) applications. The target is to enhance the narrow band behavior and to achieve ultra-wideband with high absorptivity rates. The design is based on octagonal shaped cut rings and octagonal patches printed on grounded rigid substrate. A novel unit cell is developed and enhanced with the use of lumped elements technique to obtain ultra-wideband absorbers with high absorptivity rates. It is implemented on Rogers RT5880 with dielectric relative permittivity ? r=2.2, dielectric loss tangent of tan ?=0.0009, thermal conductivity of 0.2 W/m. K and with a 1.575 mm thickness. The characteristics of the MMA are examined in term of different resistive values, geometries, and angle of incidence. The obtained results show great enhancements in both the-10 dB bandwidth and in the absorptivity rates. The narrow bandwidth of the symmetrical design is enhanced by a factor of about 200 with average absorptivity of about 98% over the whole bandwidth. The current design is a very suitable for applications in the mm-wave. © 2022 IEEE.

Description

9th International Conference on Electrical and Electronics Engineering, ICEEE 2022 -- 29 March 2022 through 31 March 2022 -- 179335

Keywords

Metamaterial absorber, Mm-wave absorber, Wideband absorber, 5G mobile communication systems, Bandwidth, Dielectric losses, Metamaterials, Ultra-wideband (UWB), Absorptivities, Metamaterial absorbers, Millimeter-wave applications, Mm waves, Mm-wave absorber, Symmetrics, Ultrawide band, Wave absorbers, Wide-band, Wideband absorber, Millimeter waves

Fields of Science

0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology

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2022 9th International Conference on Electrical and Electronics Engineering, ICEEE 2022

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Issue

Start Page

112

End Page

116
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