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一种新型复合带通型频率选择表面研究
引用本文:杨益兼,陈彬,刘君. 一种新型复合带通型频率选择表面研究[J]. 电子设计工程, 2013, 0(21): 161-163
作者姓名:杨益兼  陈彬  刘君
作者单位:中国人民解放军理工大学电磁环境效应与电光工程国家重点实验室,江苏南京210007
摘    要:带通型频率选择表面在空间电磁波滤波上有重要作用,本文提出并计算和仿真了一种复合型频率选择表面单元结构,在12 GHz到18 GHz仿真得到2 GHz的-3 dB带宽.在实验室条件下进行了远场区透射性能实验,介绍了实物FSS板参数和制作工艺;实验设备准备过程;实验方法与步骤.实测结果与仿真结果对比证实了该FSS结构具有良好的空间电磁波选频滤波能力.

关 键 词:频率选择表面  传输特性  仿真  实验

Research of a novel composite band-pass frequency selective surface
YANG Yi-jianNational Key Laborratory on Electromagnetic Environmental Effects and Electro-optical Engineering,PLA Univ. of Sci.& Tech,Nanjing,China CHEN BinNational Key Laborratory on Electromagnetic Environmental Effects and Electro-optical Engineering,PLA Univ. of Sci.& Tech,Nanjing,China LIU Jun. Research of a novel composite band-pass frequency selective surface[J]. Electronic Design Engineering, 2013, 0(21): 161-163
Authors:YANG Yi-jianNational Key Laborratory on Electromagnetic Environmental Effects  Electro-optical Engineering  PLA Univ. of Sci.& Tech  Nanjing  China CHEN BinNational Key Laborratory on Electromagnetic Environmental Effects  Electro-optical Engineering  PLA Univ. of Sci.& Tech  Nanjing  China LIU Jun
Affiliation:YANG Yi-jian(National Key Laborratory on Electromagnetic Environmental Effects and Electro-optical Engineering, PLA Univ. of Sci.& Tech, Nanjing 210007, China) CHEN Bin(National Key Laborratory on Electromagnetic Environmental Effects and Electro-optical Engineering, PLA Univ. of Sci.& Tech, Nanjing 210007, China) LIU Jun(National Key Laborratory on Electromagnetic Environmental Effects and Electro-optical Engineering, PLA Univ. of Sci.& Tech, Nanjing 210007, China)
Abstract:For the importance of band-pass Frequency Selective Surface (FSS) in space wave filtering,this paper simulates a new composite FSS structure and does an experimental study in laboratory which shows the FSS structure is capable in space electromagnetic filtering between 12GHz and 18GHz.Parameters of the FSS board,production process,process of experiment and experimental methods are introduced in detail.
Keywords:frequency selective surface  transmission properties  simulating  experiment
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