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Near-Field Microwave Imaging Utilizing Tapered Rectangular Waveguides

机译:利用锥形矩形波导的近场微波成像

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This paper is focused on utilizing tapered rectangular waveguides for near-field microwave-imaging purposes. Conventionally, the standard rectangular waveguides have been used as imaging probes to capture images of subsurface inclusions/defects in various dielectric media. The lateral resolution provided by the standard probes is inversely proportional to the waveguide's aperture size. Consequently, seeking high-resolution images dictates the operation in higher microwave frequency bands. For many applications, however, the probe's sensitivity is not optimum in these frequency bands, and hence, there is a tradeoff between sensitivity and resolution. In this paper, the authors propose the employment of tapered waveguides in the near-field imaging systems as an effort to attain higher resolution while maintaining an acceptable sensitivity. It will be shown that tapering the rectangular waveguide significantly enhances the spatial resolution of the obtained images as opposed to the standard waveguides operating at the same frequency.
机译:本文致力于将锥形矩形波导用于近场微波成像。常规上,标准矩形波导已被用作成像探针以捕获各种介电介质中的地下内含物/缺陷的图像。标准探头提供的横向分辨率与波导的孔径大小成反比。因此,寻找高分辨率图像决定了在更高微波频带中的操作。但是,对于许多应用而言,探头的灵敏度在这些频带中并不是最佳的,因此,在灵敏度和分辨率之间要进行权衡。在本文中,作者建议在近场成像系统中采用锥形波导,以在保持可接受的灵敏度的同时获得更高的分辨率。将显示出,与以相同频率工作的标准波导相反,使矩形波导逐渐变细可以显着提高所获得图像的空间分辨率。

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