Broadband radar cross-section reduction using polarization conversion metasurface
Autor: | Haixiong Li, Qi Zheng, Jun Ding, Chenjiang Guo |
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Rok vydání: | 2018 |
Předmět: |
Radar cross-section
Materials science business.industry media_common.quotation_subject Numerical analysis 020206 networking & telecommunications 02 engineering and technology 021001 nanoscience & nanotechnology Polarization (waves) Asymmetry Optics Checkerboard 0202 electrical engineering electronic engineering information engineering Electrical and Electronic Engineering Wideband Standard array 0210 nano-technology business Plasmon media_common |
Zdroj: | International Journal of Microwave and Wireless Technologies. 10:197-206 |
ISSN: | 1759-0795 1759-0787 |
DOI: | 10.1017/s1759078717001477 |
Popis: | A wideband and high-efficiency polarization conversion metasurface (PCM) is proposed and applied to reduce radar cross section (RCS). The proposed PCM unit is composed of two oblique asymmetry triangle split rings, which generate multiple plasmon resonances. Simulated and measured results demonstrate that it achieves polarization conversion over 90% from 9.24 to 17.64 GHz. Besides square checkerboard, the proposed PCM units and mirror units are arranged in triangle checkerboard. The mechanisms of both checkerboard PCMs are analyzed based on standard array theory, including the relationship between RCS reduction value and polarization conversion ratio value. The derived formulas provide a guideline to design checkerboard structure based on PCM. Simulated results demonstrate that both checkerboard PCMs achieve over 62% relative bandwidth of 10 dB RCS reduction under normal incidence with respect to the equal-sized metallic plate, which also means that the triangle one could be an alternative solution to reduce RCS. To verify the analyzed and simulated results, the fabricated sample and measured results of both checkerboard PCMs are presented. Good agreements are achieved between measurements, simulations and numerical analysis. |
Databáze: | OpenAIRE |
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