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A Varactor-Tunable High Impedance Surface With a Resistive-Lumped-Element Biasing Grid

机译:具有电阻集总元件偏置网格的压敏电阻可调高阻抗表面

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A high impedance surface consisting of metallic square patches electrically connected through vias to the ground plane beneath them is made tunable. Tunability is achieved by connecting adjacent patches with varactor diodes thus altering the capacitance between the patches and hence the surface''s resonance frequency. The varactor diodes are biased with the aid of a resistive grid. The grid is made resistive using surface mount resistors. Using an approximate equivalent circuit the effect of the varactor diode resistance is investigated for normal plane wave incidence. It is shown that at resonance, a small varactor resistance may lead to a significant absorption. The potential use of a waveguide simulator to characterize approximately the performance of the proposed metamaterial structure is investigated.
机译:由通孔电连接到其下面的接地层的金属方形贴片组成的高阻抗表面是可调的。通过将相邻的贴片与变容二极管连接,从而改变贴片之间的电容,从而改变表面的共振频率,即可实现可调谐性。变容二极管借助电阻栅偏置。使用表面贴装电阻器使栅格电阻化。使用近似等效电路,研究了变容二极管电阻对于正常平面波入射的影响。结果表明,在谐振时,较小的变容二极管电阻会导致明显的吸收。研究了波导模拟器潜在地用于表征拟议的超材料结构的性能的潜力。

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