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Near-Field Microwave Sensor Composed of 3D Printed Antennas and Lenses

机译:由3D打印天线和透镜组成的近场微波传感器

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摘要

A novel near-field microwave imaging system was designed and fabricated using the three-dimensional (3D) printing technique to manufacture X-band Pyramidal horn antennas and planar graded-index (GRIN) lenses. The flat lens focusing profile is synthesised by varying the refractive index radially in incremental steps that adjust the air-dielectric mixture. The lens is designed for direct attachment to the antenna aperture and transforms spherical waves emanating from antenna phase center into plane radiating waves. Measurement results show the antenna lens system input impedance is ≤ -10 dB, radiation pattern gain is between 10-16 dBi over the 8-12 GHz frequency band and when arrayed for polarimetry sensing has a polarisation cross-talk of ≤ -35 dB. The antenna lens system is suitable for ground penetrating radar applications.
机译:利用三维(3D)打印技术设计和制造了一种新颖的近场微波成像系统,以制造X波段金字塔形喇叭天线和平面渐变折射率(GRIN)透镜。平面透镜聚焦轮廓是通过以递增方式逐步改变折射率来调整空气-电介质混合物而合成的。该透镜设计用于直接连接到天线孔径,并将从天线相位中心发出的球形波转换为平面辐射波。测量结果表明,天线透镜系统的输入阻抗为≤-10 dB,在8-12 GHz频带内辐射方向图增益在10-16 dBi之间,并且排列用于极化检测时,极化串扰≤-35 dB。天线透镜系统适用于探地雷达应用。

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