Design, Modeling and Analysis of Low Cross Polarization Level Low Radar Cross Section Conformal Ultra Wideband Absorber based on Resistive Metasurface

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dc.contributor.author Srivastava, Saurabh K.
dc.contributor.author Dubey, Rahul
dc.contributor.author Meshram, Manoj K.
dc.date.accessioned 2024-02-02T11:03:32Z
dc.date.available 2024-02-02T11:03:32Z
dc.date.issued 2023-11-20
dc.identifier.issn 19378726
dc.identifier.uri http://localhost:8080/xmlui/handle/123456789/2801
dc.description This paper published with affiliation IIT (BHU), Varanasi in Open Acces Mode. en_US
dc.description.abstract In this paper, a low cross-polarization level, low radar cross section (RCS), conformal, ultra-wideband, polarization-insensitive absorber utilizing sinusoidal periphery annular ring (SPAR) resonator based novel resistive metasurface is presented. The proposed absorber operates with more than 90% absorptivity over the frequency range 7.68 GHz–24.90 GHz encompassing X-, Ku-and major portion of K-bands. The absorber consists of two sinusoidal peripheries annular rings embedded with lumped resistors, placed on top of a 0.1 mm thin low cost FR-4 substrate which is supported by metal backed foam. The sinusoidal periphery on the annular rings improves the absorption bandwidth and miniaturizes the proposed structure. Cross-polarized reflected component from the absorber is also investigated and included in the estimation of absorptivity to validate that the proposed structure functions as an absorber and not as a reflective type polarization converter. An equivalent circuit analysis based on the transmission line model is also presented. Novelty of the proposed article’s lies in the design approach for the proposed absorber in which flexibility is incorporated to choose unit cell geometrical parameters as per the limiting frequencies (upper and lower) of desired band along with some miniaturization aspects of the absorbing structure. Furthermore, 10 dB RCS reduction is discussed, and the formula is derived by including cross-polarized reflection component of the incident wave in estimation. The proposed absorber is validated through theoretical, simulation, and experimental studies for planar and conformal applications. en_US
dc.language.iso en en_US
dc.publisher THE ELECTROMAGNETIC ACADEMY en_US
dc.relation.ispartofseries Progress In Electromagnetics Research M;121
dc.subject Equivalent circuits en_US
dc.subject Geometry en_US
dc.subject Kurchatovium en_US
dc.subject Polarization en_US
dc.subject Structural design en_US
dc.subject Ultra-wideband (UWB) en_US
dc.subject Absorptivities en_US
dc.subject Annular rings en_US
dc.subject Cross-polarized en_US
dc.subject Design Analysis en_US
dc.subject Design models en_US
dc.subject Low cross polarization level en_US
dc.subject Metasurface en_US
dc.subject Modelling and analysis en_US
dc.subject Radar cross-sections en_US
dc.subject Ultrawide band en_US
dc.subject Radar cross section en_US
dc.title Design, Modeling and Analysis of Low Cross Polarization Level Low Radar Cross Section Conformal Ultra Wideband Absorber based on Resistive Metasurface en_US
dc.type Article en_US


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