A conformal coding metasurface for dual polarization conversion and radar cross section (RCS) reduction

Author:

Khan Hamza AsifORCID,Zhang Jun Wei,Liang Jing Cheng,Xia Jun,Zhang Jingjing

Abstract

Abstract Integrated meta-devices are the need of modern stealth application systems and have recently received a great deal of attention. Most studies have concentrated on the physics and structural design of planar metasurfaces, while conformal design that is suitable for arbitrarily curved surfaces has been rarely discussed. In this study, a conformal polarization-independent 1-bit coding metasurface (CM) is proposed. A fundamental element of a proposed CM is firstly designed which converts the linearly polarized incident electromagnetic wave into its orthogonal equivalent at 8.53–11.63 and 18.67–22.34 GHz with a polarization-conversion-ratio of more than 90%, and enables linear-to-circular polarization conversion from 12.40 to 17.56 GHz. Next, the basic element is rotated by 90° to generate another element with a phase difference of π between them. Both these elements are distributed in an array using a random aperiodic coding sequence to form 1-bit CM for radar cross section (RCS) reduction. More than 10 dB RCS reduction for arbitrarily polarized waves has been realized in dual frequency bands ranging 8.75–11.22 and 19.10–21.20 GHz, for planar as well as with conformal structures. A prototype is fabricated, and the experiments show a good agreement with simulated results. Potential applications of the proposed design include reflector antennas, radar, satellite communication, and stealth technology.

Publisher

IOP Publishing

Subject

Atomic and Molecular Physics, and Optics,Electronic, Optical and Magnetic Materials

Cited by 7 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. A Broadband Meta-Absorber for Curved Terahertz Stealth Applications;Electronics;2024-07-27

2. Research on optimization of ship radar RCS based on PO-MOM algorithm;Third International Symposium on Computer Applications and Information Systems (ISCAIS 2024);2024-07-11

3. A segmented conformal surface for ultrawideband monostatic and bistatic RCS reductions;Journal of Electromagnetic Waves and Applications;2024-05-31

4. Dual-band Functionalities Switchable Reconfigurable Metasurface;2024 Photonics & Electromagnetics Research Symposium (PIERS);2024-04-21

5. Design, optimization, and comparative analysis of wide-band polarization conversion along with dual coding sequences for RCS reduction;Scientific Reports;2024-04-09

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