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Sectoral Horn and Patch Array Antenna Design for a 76–81 GHz High-Resolution Tomographic Radar

机译:76-81 GHz高分辨率断层雷达的部门喇叭和贴片阵列天线设计

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Nondestructive testing is employed in a wide range of industrial applications for quality control and process optimization. Recently, tomographic millimeter-wave radar has been investigated for highly demanding scenarios such as imaging of gas distributions. In such systems, application specific antenna design is crucial to ensure a sufficient number of signal paths between the sensors while at the same time reducing unwanted reflections. This paper describes the design of both a sectoral horn and a patch array antenna producing a fan-shaped beam in the frequency range of 76–81 GHz. Prototypes are realized utilizing innovative additive manufacturing techniques and characterized in a semi-anechoic chamber. The impact of mounting the antennas behind quartz glass is investigated in both simulation and measurement. Finally, the antenna performance is compared with commercial standard gain horn antennas in a tomographic radar setup demonstrating a significant improvement in the quality of the reconstructed permittivity distribution.
机译:无损检测用于各种工业应用,用于质量控制和过程优化。最近,已经研究了断层毫米波雷达,以获得高苛刻的情况,例如气体分布的成像。在这种系统中,应用特定天线设计对于确保传感器之间的足够数量的信号路径,同时减少不需要的反射。本文介绍了在76-81GHz频率范围内产生扇形梁的扇形喇叭和贴片阵列天线的设计。用创新的添加剂制造技术实现原型,并在半透道室中表征。在模拟和测量中研究了安装天线后面的天线的影响。最后,将天线性能与商业标准增益喇叭天线进行比较,在断层雷达设置中,证明了重建介电常数分布的质量的显着改善。

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