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UWB Microwave Imaging of Objects With Canonical Shape

机译:具有标准形状的物体的UWB微波成像

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摘要

A novel technique for imaging based on ultrawideband (UWB) microwave signals is introduced. Specifically, the procedure deals with the Huygens Principle (HP); using HP to forward-propagate the waves removes the need to solve inverse problems and, consequently, no matrix generation/inversion is required. Together with its simplicity, the methodology permits the capture of contrast—the extent to which different media can be discriminated in the final image. Moreover, UWB allows all the information in the frequency domain to be utilized by combining the information from the individual frequencies to construct a consistent image. It follows that the methodology can identify the presence and location of significant scatterers inside a volume. Validation of the technique through both simulations and measurements on cylinder and spheres with inclusions has been performed. Application of the proposed technique to medical imaging is envisaged.
机译:介绍了一种基于超宽带(UWB)微波信号的成像新技术。具体来说,该程序涉及惠更斯原理(HP);使用HP正向传播波无需解决反问题,因此不需要矩阵生成/求逆。加上其简单性,该方法允许捕获对比度-可以在最终图像中区分不同媒体的程度。此外,UWB通过组合来自各个频率的信息以构造一致的图像,从而允许利用频域中的所有信息。因此,该方法可以识别体积内重要散射体的存在和位置。通过对包含夹杂物的圆柱体和球体进行模拟和测量,对该技术进行了验证。设想了所提出的技术在医学成像中的应用。

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