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An analysis of gradient-induced distortion in ATI-SAR imagery of surface currents

机译:ATI-SAR表面电流图像中梯度引起的畸变分析

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This paper summarizes an analysis of gradient-induced distortions in the surface current estimates generated by along-track interferometric SAR (ATI-SAR) systems. In the presence of spatial current gradients, an effect akin to velocity bunching can cause distortion in the measured current profiles. This distortion is caused by variation in the azimuthal displacement induced by the current itself. Up to a point, these distortions can be removed by a straightforward, spatial remapping of the interferogram pixels based upon their phase values. However, there is a critical current gradient beyond which the true surface current field is not recoverable. This mechanism is compounded in dual-beam ATI-SAR systems designed to estimate the surface current vector using only a single aircraft pass. In such systems, interferograms from two squinted beams, one squinted forward of broadside and the other squinted aft by the same amount, are combined to measure the full surface current vector. However, when the current vector does not bisect the angle between the two beams, the along-track component of the current induces unequal azimuthal displacements in the fore- and aft-squinted interferograms. As a result, the two interferograms will not be spatially registered, in that corresponding pixels in the fore- and aft-interferograms will be related to currents at spatially distinct points on the water surface. Additional vector distortions will, therefore, occur in and around the gradient region. These effects are explored through an approximate, linear analysis as well as through an ATI-SAR model that accounts for nonlinearity and finite spatial resolution, using the current gradients present in rivers as an example.
机译:本文总结了由沿轨干涉SAR(ATI-SAR)系统生成的表面电流估计中的坡度引起的畸变的分析。在存在空间电流梯度的情况下,类似于速度成束的效应会导致所测量的电流曲线失真。这种失真是由电流本身引起的方位角位移的变化引起的。到目前为止,可以通过基于干涉图像素的相位值进行直接的空间重新映射来消除这些失真。但是,存在一个临界电流梯度,超过该临界电流梯度,将无法恢复真实的表面电流场。这种机制在双束ATI-SAR系统中得到了增强,该系统设计为仅使用一次飞机通过即可估算表面电流矢量。在这样的系统中,来自两个斜视光束的干涉图被组合起来以测量整个表面电流矢量,两个斜视光束的一个斜视在宽边的前方,另一个斜视在后方。但是,当电流矢量未将两束光的夹角平分时,电流的沿磁道分量会在前斜视和后斜视干涉图中引起不相等的方位角位移。结果,两个干涉图将不会在空间上对齐,因为前后干涉图中的相应像素将与水面上空间不同点处的电流相关。因此,附加矢量失真将在梯度区域内和附近发生。通过近似的线性分析以及通过考虑河流中当前电流梯度的非线性和有限空间分辨率的ATI-SAR模型,探索了这些影响。

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