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Low-Profile, Highly-Selective, Dual-Band Frequency Selective Surfaces With Closely Spaced Bands of Operation

机译:薄型,高选择性,双频带频率选择表面,工作频带间隔很近

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摘要

We present a new design of a dual-band frequency selective surface (FSS) with closely spaced bands of operation and a highly-selective frequency response at each band. A multi-stage design procedure is also proposed for the design and synthesis of this class of frequency selective surfaces. The design procedure is based on synthesizing the desired device from its equivalent circuit parameter values. An approximate analytical technique is provided, which can be used to determine the values of the equivalent circuit parameters of this dual-band device from the basic system level characteristics of its transfer function including the center frequencies of operations of its two bands of operation and the bandwidth at each of these bands. The use of this design procedure is described in detail by a design example which follows the proposed design procedure step by step; the validity of the procedure is verified using full-wave EM simulations and experimental characterization of a fabricated prototype of the proposed device. Experimental characterizations of this device show that it has a stable frequency response as a function of angle of incidence for both the transverse electric (TE) and the transverse magnetic (TM) polarizations. This stability is attributed to the extremely small overall thickness of the structure as well as its small unit cell dimensions.
机译:我们提出了一种双频带频率选择表面(FSS)的新设计,该系统具有紧密间隔的工作频带,并且在每个频带都具有高度选择性的频率响应。还提出了用于设计和合成此类选频表面的多阶段设计程序。设计过程基于根据所需器件的等效电路参数值对其进行合成。提供了一种近似分析技术,该技术可用于根据其传递函数的基本系统级特性(包括其两个工作频段的工作中心频率和工作频率)确定该双频段设备的等效电路参数值。每个频段的带宽。通过一个设计示例详细描述了此设计过程的使用,该设计示例将逐步遵循建议的设计过程;该程序的有效性通过全波电磁仿真和所提出装置的制造原型的实验特性进行了验证。该设备的实验特性表明,对于横向电(TE)极化和横向磁(TM)极化,该设备都具有稳定的频率响应,这是入射角的函数。这种稳定性归因于该结构的整体厚度极小以及其较小的晶胞尺寸。

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