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Ultra-wideband radar imaging experiment for verifying super-resolution in nonlinear inverse scattering

机译:超宽带雷达成像试验,用于在非线性逆散射中验证超分辨率

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The super-resolution phenomenon in nonlinear inverse scattering has been reported previously using numerically simulated data. What was shown was the ability of a nonlinear inverse scattering method to resolve features that are much less than half a wavelength, the criterion dictated by the Rayleigh criterion. The phenomenon has been attributed to the multiple scattering effect within an inhomogeneous body. The high spatial frequency (high resolution) information of the object is usually contained in the evanescent waves when only single scattering physics is considered. Multiple scattering converts evanescent waves into propagating waves and vice versa. Hence, in an inverse scattering experiment, even though an object is interrogated with a propagating wave, and only scattered waves corresponding to propagating waves can be measured, the scattered waves contains high resolution information about the scatterer because of the evanescent-propagating waves conversion in a multiply scattered field. Therefore, an inverse scattering method that can unravel the multiple scattering information can extract the high resolution information on a scatterer.
机译:在先前使用数值模拟数据报告了非线性逆散射中的超分辨率现象。所示的是非线性逆散射方法来解决要少于一半波长的特征的能力,由瑞利标准决定的标准。该现象归因于不均匀体内的多种散射效应。当仅考虑单个散射物理学时,对象的高空间频率(高分辨率)信息通常包含在渐逝波中。多个散射将渐变波转换为传播波,反之亦然。因此,在逆散射实验中,即使对象被传播波询问,并且只能测量对应于传播波对应的散射波,散射波由于越来越传播的波转换而包含关于散射体的高分辨率信息乘法散射场。因此,可以解开多个散射信息的逆散射方法可以提取散射器上的高分辨率信息。

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