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Investigation of the characteristics of low-cost and lightweight horn array antennas with novel monolithic waveguide feeding networks

机译:具有新型单片波导馈电网的低成本和轻型喇叭阵列天线特性的研究

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摘要

3D printed X-Ku band single horn antenna and 2 x 1 and 2 x 2 pyramidal horn array antennas with novel lightweight and monolithic waveguide feeding networks (WFNs) are proposed at 10-15 GHz for satellite communications and radar systems to increase the gain. Proposed novel fabrication method consists of two main steps that are to make the skeleton of horn array antenna from acrylonitrile butadiene styrene (ABS) thermoplastic via 3D printer and to perform copper plating over all surface of antenna by using the electroless plating and electroplating processes. The WFN structures with 3 lambda element spacing designed and realized by using WR75 waveguide T-junction, E-type bend, and UDR 120 flange. Qualitative agreement between measurement and simulation via CST Microwave Studio is obtained with max 1 dB due to high precision and surface roughness. The gains of array antennas are increased by about 1.5 dB and 3 dB, respectively compared to the single antenna. VSWRs of array antennas are 0.3 dB and 0.6 dB, respectively higher than the single one. In the study, proposed 3D printed components not only with 90% lighter weight than, but also with 80% cheaper than commercial products, and horn arrays with -40 dB cross-polarization values.
机译:3D印刷X-Ku带单喇叭天线和2 x 1和2 x 2金字塔喇叭阵列天线与新型轻质和单片波导馈送网络(WFNS)提出为10-15 GHz,用于卫星通信和雷达系统,以增加增益。所提出的新颖制造方法包括两个主要步骤,即通过3D打印机从丙烯腈丁二烯苯乙烯(ABS)热塑性塑料的喇叭阵列天线的骨架并通过使用无电镀和电镀工艺在天线的所有表面上进行铜电镀。 WFN结构采用3个Lambda元件间隔,通过使用WR75波导T型连接,E型弯曲和UDR 120法兰设计和实现。由于高精度和表面粗糙度,通过CST微波工作室的测量和仿真之间的定性协议获得了最大1 dB。与单个天线相比,阵列天线的增益分别增加约1.5dB和3dB。阵列天线的VSWR分别高于单个0.3dB和0.6 dB。在该研究中,提出了3D印刷组件,不仅具有比商业产品便宜的90%,而且与-40 dB交叉极化值便宜80%。

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