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首页> 外文期刊>Journal of the Korean Institute of Electromagnetic Engineering and Science >Double-Layered Frequency Selective Surface Superstrate Using Ring Slot and Dipole-Shaped Unit Cell Structure
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Double-Layered Frequency Selective Surface Superstrate Using Ring Slot and Dipole-Shaped Unit Cell Structure

机译:使用环形槽和偶极形晶胞结构的双层频率选择性表面覆层

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摘要

In this paper, a double-layered frequency selective surface(FSS) superstrate was built and tested. The unit cell of the proposed FSS consists of a ring slot and a dipole-shaped structure and shows a complementary frequency response. Each unit cell is printed on two sides of a substrate. By using these double-layered structures, the first resonant frequency of the pass-band can be lowered. As a result, the size of the unit cell is minimized and the spacing between the other cells is reduced. The proposed FSS-dipole composite antenna is designed for the gain enhancement of wide-band code division multiple access(WCDMA) frequency bands(1.92~2.17 GHz) with a low quality factor(Q=0.17). To verify the gain enhancement performance of the FSS, an FSS-dipole composite antenna was created. Although the FSS layer enhances the gain of the primary radiation source of the dipole antenna, the FSS-dipole complex antenna cannot show a uniform gain over the entire desired frequency band. The experimental results show a gain enhancement of 3 dBi with an FSS superstrate in the WCDMA frequency band.
机译:本文构建并测试了双层频率选择性表面(FSS)覆层。提出的FSS的单位单元由环形槽和偶极形结构组成,并显示出互补的频率响应。每个单元电池都印刷在基板的两侧。通过使用这些双层结构,可以降低通带的第一谐振频率。结果,单位单元的尺寸被最小化并且其他单元之间的间隔减小。提出的FSS偶极子复合天线设计用于以低质量因数(Q = 0.17)增强宽带码分多址(WCDMA)频带(1.92〜2.17 GHz)的增益。为了验证FSS的增益增强性能,创建了FSS偶极复合天线。尽管FSS层增强了偶极天线的主要辐射源的增益,但是FSS-偶极复天线无法在整个所需频带上显示出均匀的增益。实验结果表明,在WCDMA频带中,FSS覆盖层可将增益提高3 dBi。

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