首页> 外文会议>IEEE-APS Topical Conference on Antennas and Propagation in Wireless Communications >Experimental Verification of 3D Printed Low-Conductivity Graphene-Enhanced PLA Absorbers for Back Lobe Suppression in Aperture-Coupled Antennas
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Experimental Verification of 3D Printed Low-Conductivity Graphene-Enhanced PLA Absorbers for Back Lobe Suppression in Aperture-Coupled Antennas

机译:3D打印的低电导石墨烯增强PLA吸收器用于孔径耦合天线中后瓣抑制的实验验证

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In this paper, the application of 3D printed, Iow-conductivity material absorbers is experimentally verified for back lobe suppression in aperture-coupled patch antennas. Various shapes and thicknesses of absorbers such as flat slab and array of pyramids were tested for maximum suppression of the aperture radiation. Moreover, different suspension height below the feeding network have been tested for the influence on the antenna's impedance match. A reference aperture-coupled broadband suspended patch antenna operating at center frequency of 5.6 GHz along with absorbers printed using Fused Deposition Modelling (FDM) type 3D printer out of graphene- enhanced Polyactic acid (PLA) filament were used for verification of the proposed technique. The obtained results show as much as 7 dB lower back lobe level compared to the case of a reference antenna.
机译:在本文中,通过实验验证了3D打印的低电导率材料吸收器在孔径耦合贴片天线中抑制后瓣的应用。测试了各种形状和厚度的吸收体,例如平板和金字塔阵列,以最大程度地抑制孔径辐射。此外,已经测试了在馈电网络下方的不同悬架高度对天线阻抗匹配的影响。参考孔径耦合的宽带悬挂式贴片天线工作在5.6 GHz的中心频率上,并使用吸收器(使用石墨烯增强的聚乳酸(PLA)丝从熔融沉积建模(FDM)3D打印机打印)来验证所提出的技术。与参考天线相比,所获得的结果表明后瓣电平降低了多达7 dB。

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