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A novel miniaturized-element frequency selective surface with two independent pass-bands at Ku-band and millimeter-wave frequency
Wang X. Z.; Gao J. S.; Xu N. X.
2014
发表期刊Journal of Infrared and Millimeter Waves
ISSNISBN/1001-9014
卷号33期号:3页码:241-247
摘要To meet the multi-band and integration requirements of the communication apparatus, the coupling and resonance mechanism can be exploited to design a miniaturized-element frequency selective surface (FSS) with two independent pass-bands at Ku-band and millimeter wave (MMW) frequency. The interaction of the layers was analyzed based on the structure, and the precise transmissions for different parameters were obtained using the vector modal matching method. The results show that the structure has two independent and largely separated pass-bands: the first one has miniaturization characteristic with a unit cell size of about lambda(1)/10, where lambda(1) is the wavelength at the center frequency of the first pass-band; the second one is a rectangular pass-band with a "shallow vale" of -0. 828 dB at 47.4 GHz between two peaks at 42.6 GHz and 49.6 GHz, respectively. The transmission and resonant frequency are stable as the incident angle was varied from normal to 60 degrees. The multifunctional FSS can satisfy the engineering requirements via parameters optimization.
收录类别SCI
语种中文
文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/43690
专题中科院长春光机所知识产出
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Wang X. Z.,Gao J. S.,Xu N. X.. A novel miniaturized-element frequency selective surface with two independent pass-bands at Ku-band and millimeter-wave frequency[J]. Journal of Infrared and Millimeter Waves,2014,33(3):241-247.
APA Wang X. Z.,Gao J. S.,&Xu N. X..(2014).A novel miniaturized-element frequency selective surface with two independent pass-bands at Ku-band and millimeter-wave frequency.Journal of Infrared and Millimeter Waves,33(3),241-247.
MLA Wang X. Z.,et al."A novel miniaturized-element frequency selective surface with two independent pass-bands at Ku-band and millimeter-wave frequency".Journal of Infrared and Millimeter Waves 33.3(2014):241-247.
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