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Novel Multifunctional Reconfigurable Active Frequency Selective Surface

机译:新型多功能可重构有源频率选择表面

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In this paper, a multifunctional active frequency selective surface (MAFSS) is presented based on the switching responses of active components. The proposed structure comprises periodic arrays of metallic patterns imprinted on both sides of an FR4 substrate on which p-i-n diodes are embedded with parallel feed networks. The novelty of the design lies in its multifunctional characteristics with independent control of the biasing states (ON/OFF) of the diodes mounted on opposite layers. This leads to four different working states (dual bandpass for OFF-OFF state, single-band absorber for OFF-ON state, single-bandpass for ON-OFF state, and reflector for ON-ON state) being facilitated by the proposed reconfigurable AFSS. Furthermore, the effects of the design parameters and active components on multifunctional responses are extensively analyzed by deriving equivalent circuit models. Even though the topology is polarization sensitive, multiple dividable working functions (transmission, absorption, and reflection) have been realized in single geometry, unlike the earlier reported designs. The proposed structure has also been fabricated, and the measured responses show reasonable agreement with the simulated results under normal incidence. An MAFSS with such diverse characteristics is an essential element for regulating electromagnetic wave propagation in manifold applications.
机译:本文基于有源元件的开关响应,提出了一种多功能有源频率选择表面(MAFSS)。所提出的结构包括印在FR4基板两侧的金属图案的周期性阵列,在该基板上嵌入了带有并行馈电网络的p-i-n二极管。该设计的新颖之处在于其多功能特性,可独立控制安装在相对层上的二极管的偏置状态(ON / OFF)。所提出的可重新配置的AFSS有助于实现四个不同的工作状态(用于OFF-OFF状态的双带通,用于OFF-ON状态的单带吸收器,用于ON-OFF状态的单带通和用于ON-ON状态的反射器) 。此外,通过推导等效电路模型,广泛分析了设计参数和有源元件对多功能响应的影响。尽管拓扑结构对偏振敏感,但与早期报道的设计不同,在单个几何结构中已经实现了多个可分割的工作功能(透射,吸收和反射)。拟议的结构也已被制造出来,并且在垂直入射下测得的响应与模拟结果显示出合理的一致性。具有如此多样特性的MAFSS是调节多用途电磁波传播的基本要素。

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