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Circularly polarized inverted stacked high gain antenna with frequency selective surface

机译:具有频率选择表面的圆极化倒置堆叠高增益天线

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In this work; the novel design of dumbbell shaped frequency selective surface (FSS) is demonstrated as superstrate. The array of this designed FSS structure is incorporated on two different antennas; (1) Microstrip Patch Antenna (MPA), and (2) Inverted Stacked Microstrip Patch Antenna (ISMPA). The FSS unit cell reflection magnitude is nearly 0.95 in the vicinity of both antennas resonance frequencies. Based on the ray tracing phenomenon multiple reflections occur between superstate and ground plane. So by this phenomenon the gain of circular patch and the ISMPA is enhanced by 6.02 dBic and 5.1 dBic respectively. In the measured results, the impedance bandwidth of MPA and ISMPA are 6.66% (5.8-6.2 GHz) at 6 GHz center frequency and 5.3% (5.53-5.83 GHz) at 5.67 GHz center frequency respectively. The corner truncated dumbbell shaped FSS layer also acts as a polarizer. The axial ratio 3 dB band width of MPA and ISMPA are 8.66% (5.64-6.16 GHz) and 12.6% (5.52-6.24 GHz). Here simulation results are shown good agreement with measured results. (c) 2016 Wiley Periodicals, Inc.
机译:在这项工作中;哑铃形频率选择表面(FSS)的新颖设计被证明是成功的。这种设计的FSS结构的阵列被并入两个不同的天线中。 (1)微带贴片天线(MPA)和(2)倒置堆叠微带贴片天线(ISMPA)。在两个天线的谐振频率附近,FSS单位单元反射幅度接近0.95。基于射线追踪现象,超状态和地平面之间会发生多次反射。因此,通过这种现象,圆形贴片和ISMPA的增益分别提高了6.02 dBic和5.1 dBic。在测量结果中,MPA和ISMPA的阻抗带宽在6 GHz中心频率下分别为6.66%(5.8-6.2 GHz)和在5.67 GHz中心频率下为5.3%(5.53-5.83 GHz)。角截去的哑铃形FSS层也可以用作偏振器。 MPA和ISMPA的轴向比率3 dB带宽分别为8.66%(5.64-6.16 GHz)和12.6%(5.52-6.24 GHz)。此处显示的仿真结果与测量结果吻合良好。 (c)2016年威利期刊有限公司

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