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首页> 外文期刊>Antennas and Propagation, IEEE Transactions on >Design and Analysis of a Tunable Miniaturized-Element Frequency-Selective Surface Without Bias Network
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Design and Analysis of a Tunable Miniaturized-Element Frequency-Selective Surface Without Bias Network

机译:无偏置网络的可调谐小型化元件频率选择表面的设计与分析

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A novel, tunable miniaturized-element frequency-selective surface that does not require additional bias networks is presented. This spatial filter is composed of two wire-grids printed on opposite sides of a substrate and connected to each other with an array of varactors using plated via holes. Varactor diodes are positioned between the grids. Via sections and metallic pads are fabricated and create a dc path for biasing the varactors with the grids themselves. This configuration eliminates the need for any additional network, and therefore resolves the design difficulties associated with the spurious response of the bias network. An equivalent circuit model is developed to facilitate the design procedure. Full-wave numerical simulations are used to validate the results based on the circuit model. Simulations show that by altering the capacitance of the varactors from 0.1 to 1 pF, a frequency tunability from 8 to 10 GHz with an almost constant bandwidth can be achieved.
机译:提出了一种不需要额外偏置网络的新颖的可调谐小型化元件频率选择表面。该空间滤波器由两个线栅组成,该线栅印刷在基板的相对侧,并使用电镀的过孔与变容二极管阵列相互连接。变容二极管位于栅极之间。制造通孔部分和金属焊盘,并创建一个直流路径,以使变容二极管与栅极本身偏置。这种配置消除了对任何其他网络的需求,因此解决了与偏置网络的寄生响应相关的设计难题。开发了等效电路模型以简化设计过程。全波数值模拟用于基于电路模型验证结果。仿真表明,通过将变容二极管的电容从0.1 pF更改为1 pF,可以实现具有几乎恒定带宽的8至10 GHz的频率可调性。

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