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Near-Field Microwave Imaging Using Open-Ended Circular Waveguide Probes

机译:使用开放式环形波导探头的近场微波成像

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Near-field microwave imaging and subsurface sensing have shown significant potential in a wide range of applications, including corrosion mapping and composite structure inspection. Most of the conventional near-field imaging systems developed so far utilize an antenna (probe) scanned over the structure-under-test (SUT). The near-field interaction between the microwave signal and the SUT reveals the sought-after information about the interior of the irradiated structure. Previous systems commonly used open-ended rectangular waveguides as the near-field imaging probe. In this paper, the utility of circular waveguide probes for near-field imaging will be discussed in detail and compared with the conventional rectangular probe. The motivation behind utilizing the circular probe is the fact that its aperture field distribution yields lower side lobes. Herein, the reflection properties, near-field characteristics, sensitivity, and spatial resolution of both probes are contrasted using simulations and measurements. Furthermore, imaging results of various targets, such as flat-bottom holes, notches, as well as corrosion-under-paint samples acquired using circular and rectangular probes are presented. It will be shown that the circular probes offer key advantages in terms of resolution as well as sensitivity compared with the conventional open-ended rectangular waveguides.
机译:近场微波成像和地下传感已在包括腐蚀图和复合结构检查在内的广泛应用中显示出巨大潜力。到目前为止,开发的大多数常规近场成像系统都利用在被测结构(SUT)上扫描的天线(探针)。微波信号和SUT之间的近场相互作用揭示了关于辐照结构内部的广受欢迎的信息。先前的系统通常使用开放式矩形波导作为近场成像探针。在本文中,将详细讨论圆形波导探针在近场成像中的用途,并将其与常规矩形探针进行比较。利用圆形探针的动机在于其孔径场分布会产生较低的旁瓣。在此,使用模拟和测量来对比两种探针的反射特性,近场特性,灵敏度和空间分辨率。此外,还介绍了各种目标的成像结果,例如平底孔,刻痕以及使用圆形和矩形探针采集的油漆下腐蚀样品。可以看出,与传统的开放式矩形波导相比,圆形探头在分辨率和灵敏度方面都具有关键优势。

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