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Scene-based method for spatial misregistration detection in hyperspectral imagery

机译:基于场景的高光谱图像空间配准检测方法

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Hyperspectral imaging (HSI) sensors suffer from spatial misregistration, an artifact that prevents the accurate acquisition of the spectra. Physical considerations let us assume that the influence of the spatial misregistration on the acquired data depends both on the wavelength and on the across-track position. A scene-based method, based on edge detection, is therefore proposed. Such a procedure measures the variation on the spatial location of an edge between its various monochromatic projections, giving an estimation for spatial misregistration, and also allowing identification of misalignments. The method has been applied to several hyperspectral sensors, either prism, or grating-based designs. The results confirm the dependence assumptions on λ and θ, spectral wavelength and across-track pixel, respectively. Suggestions are also given to correct for spatial misregistration.
机译:高光谱成像(HSI)传感器存在空间重合失调的现象,这是一种伪影,妨碍了光谱的准确采集。物理考虑因素使我们假设空间重合失调对所采集数据的影响既取决于波长又取决于跨轨位置。因此,提出了一种基于边缘检测的基于场景的方法。这样的过程测量了边缘的各种单色投影之间的边缘的空间位置的变化,从而给出了空间失准的估计,并且还允许识别失准。该方法已应用于几种基于棱镜或光栅设计的高光谱传感器。结果证实了分别对λ和θ,光谱波长和跨轨像素的依赖假设。还提出了纠正空间配准不良的建议。

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