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Broadband metamaterial based Resonant Cavity Antenna

机译:基于宽带超材料的谐振腔天线

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A high gain planar Resonant Cavity Antenna (RCA) inspired by metamaterial superstrate is proposed operating at C-band. The RCA is modelled using simple ray tracing method. The unit cell metamaterial consists of Artificial Magnetic Conductor (AMC) and square patch laminated on either side of the dielectric material, is used as the superstrate to design RCA. Square patch is capacitive type and that AMC as inductive. Effects of the reflection phase of the substrate decides the gain of the antenna. A cylindrical dielectric resonator antenna (CDRA) has been used as the primary radiator. The metamaterial unit cell structure is characterized and its effective material parameters are extracted through its S-parameters simulation. The proposed antenna achieves 22dBi gain in the broad range of 3.4 to 7.8 GHz with only 4 ¿¿ 4 array superstrate.
机译:提出了一种受超材料上层结构启发的高增益平面谐振腔天线(RCA),其工作于C波段。使用简单的光线跟踪方法对RCA进行建模。晶胞超材料由人造电磁导体(AMC)和层压在介电材料两侧的方形贴片组成,用作上层板来设计RCA。方形贴片为电容式,AMC为感性。基板反射相位的影响决定了天线的增益。圆柱电介质谐振器天线(CDRA)已用作主要辐射器。表征了超材料单元格结构,并通过其S参数模拟提取了其有效材料参数。所提出的天线在3.4至7.8 GHz的宽范围内仅具有4个4阵列覆盖层就可实现22dBi增益。

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