An efficient and low-profile metasurface-based polarization converter with linear and circular polarization efficiencies for X- and Ku-Band applications

圆极化 光学 轴比 Ku波段 线极化 极化(电化学) 带宽(计算) 物理 微波食品加热 转换器 材料科学 微带线 计算机科学 电压 电信 化学 量子力学 物理化学 激光器
作者
Muhammedfatih CORAPSİZ
出处
期刊:Journal of Electromagnetic Waves and Applications [Informa]
卷期号:37 (18): 1597-1611 被引量:1
标识
DOI:10.1080/09205071.2023.2262985
摘要

AbstractIn this study, a metasurface-based linear and circular polarization converter operating on the reflection mode is proposed for X- and Ku-band microwave applications. The proposed converter offers an optimum performance with a polarization conversion ratio (PCR) and polarization matching ratio (PMR) greater than 93% in the 8.32--17.55GHz bandwidth for a linearly polarized in the y-direction and right-handed circular polarized (RHCP) incident waves. Besides, the design performs over 80% PCR performance up to 45∘ under oblique incidence. Moreover, the proposed converter is capable of left-handed circular polarization conversion between 7.42 and 7.68 GHz for a y-polarized incident wave. The design offers a relative bandwidth (RBW) of 71.36%. The converter design is constructed with metal termination, an easily accessible FR-4 substrate and a simple design metasurface. Surface currents of the polarization converter at resonance frequencies of 8.77, 12.88 and 16.7GHz were examined to understand its working mechanism. In addition, when the proposed design is rearranged with the appropriate geometry, the monostatic RCS reduction value in the 8.0–17.7GHz range is observed to be higher than 10 dB. CST program (a commercial 3D electromagnetic simulator) was used in simulations. The simulated device was fabricated with a traditional board fabrication technique. Simulation results were verified with free space measurements calibrated by the thru-reflect-line calibration procedure. The performance and efficiency of the proposed polarization converter were compared with other converters in the literature.Keywords: Metasurfacepolarization conversionlinear polarizationcircular polarizationX-band and Ku-bandRCS reduction Disclosure statementNo potential conflict of interest was reported by the author(s).Additional informationNotes on contributorsMuhammed Fatih CorapsizMuhammed Fatih Corapsiz received the B.S. degree from Firat University, Elazig, Turkey, in 2003, and the M.S. and Ph.D. degrees from Ataturk University, Erzurum, Turkey, in 2009 and 2014, respectively, all in electrical and electronics engineering. Since 2016, he has been an Assistant Professor with the Department of Electrical and Electronics Engineering, His research interests include mechatronic and robotic systems, solar energy, dc-dc converters and metasurface-based linear and circular polarization converters.
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