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首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Single-Layer High-Order Miniaturized-Element Frequency-Selective Surfaces
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Single-Layer High-Order Miniaturized-Element Frequency-Selective Surfaces

机译:单层高阶小型化元件频率选择表面

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A new miniaturized-element frequency-selective surface is presented in this paper. This frequency-selective surface is made up of a 2-D periodic array of metallic loop and a wire grid of the same period printed on either side of a very thin substrate. Unique features of the new design include localized frequency-selective properties, high-order frequency response achieved by a single substrate, lack of passband harmonics in the frequency response, and very low frequency response sensitivity to the incidence angle. High-order frequency response is accomplished through the application of a thin substrate that allows considerable couplings between the elements on the two sides of the substrate. The layers'' couplings in conjunction with each layer characteristics are designed to produce a high-$Q$ bandpass frequency response, in addition to a transmission zero. It is shown that by inserting variable capacitors in the gap between the metallic loops, the center frequency of the passband can be tuned over nearly an octave. In addition, using a cluster of loops as the unit cell and modifying the parameters of the loops within the cluster, a dual-band characteristic from a single-layer miniaturized-element frequency-selective surface can be achieved. A prototype sample of the miniaturized-element frequency-selective surface, whose unit cell can be as small as $lambda_{0} /12$ , is fabricated to verify the design performance through a standard free-space measurement setup. The transmission characteristic of the structure is measured and compared with numerical simulation results.
机译:本文提出了一种新型的小型化频率选择表面。该频率选择表面由金属回路的二维周期性阵列和相同周期的线栅组成,该周期印刷在非常薄的基板的两侧。新设计的独特功能包括局部频率选择特性,单个基板可实现的高阶频率响应,频率响应中缺乏通带谐波以及对入射角的极低频率响应灵敏度。高阶频率响应是通过应用薄基板来实现的,该基板允许在基板两侧的元件之间进行相当大的耦合。这些层的耦合与每个层的特性一起被设计为除了传输零外,还产生较高的$ Q $带通频率响应。结果表明,通过在金属环路之间的间隙中插入可变电容器,可以将通带的中心频率调谐到接近八度的范围。另外,使用一组回路作为单位单元并修改该组内回路的参数,可以实现来自单层小型化元件频率选择表面的双频带特性。制作了一个微型元素频率选择表面的原型样本,其单位像元可以小到$ lambda_ {0} / 12 $,以通过标准的自由空间测量设置来验证设计性能。测量结构的透射特性,并将其与数值模拟结果进行比较。

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