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RF Imaging of Dielectric Samples Using Complementary Split Ring Resonator Array

机译:使用互补裂环谐振器阵列对介电样品进行RF成像

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A microwave subsurface imaging scheme using a planar sensor based on an array of complementary split ring resonator (CSRR) is proposed. Conventionally, sensors based on single CSRR element are used for near field microwave imaging in which the sensor is made to scan the target region. However, while imaging larger test regions, sensor with multiple CSRR elements is extremely advantageous as it reduces the scanning time drastically by a factor that depends on the number of resonating units present in the array. The proposed sensor comprises of a 3×3 array of CSRR sensing elements, resonating at three different frequencies. The CSRR structures have a meandered configuration, possessing improved sensing capabilities compared to a conventional rectangular resonating unit of same dimensions. When the object to be imaged is placed on top of the CSRR structures, the sensor responds with a change in the transmission minimum frequency, with the shift proportional to the dielectric properties of the target region. The practical utility of the proposed scheme is established with the help of retrieved images of a checkerboard-like test sample.
机译:提出了一种基于平面传感器的微波地下成像方案,该平面传感器基于互补开口环谐振器(CSRR)阵列。传统上,基于单个CSRR元件的传感器用于近场微波成像,其中使传感器扫描目标区域。但是,在对较大的测试区域进行成像时,具有多个CSRR元件的传感器具有极大的优势,因为它可以将扫描时间大幅度减少,具体取决于阵列中存在的谐振单元的数量。所提出的传感器包括在三个不同频率下谐振的CSRR传感元件的3×3阵列。与相同尺寸的传统矩形谐振单元相比,CSRR结构具有曲折的配置,具有改进的感测能力。当将要成像的物体放在CSRR结构的顶部时,传感器会以透射最小频率的变化作为响应,该变化与目标区域的介电特性成比例。借助棋盘状测试样本的检索图像,可以建立所提出方案的实用性。

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