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首页> 外文期刊>Proceedings of the Royal Society. Mathematical, physical and engineering sciences >On the model-based estimation of backscatter texture from SAR image texture for area-extensive scenes
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On the model-based estimation of backscatter texture from SAR image texture for area-extensive scenes

机译:基于模型的SAR图像纹理用于区域扩展场景的反向散射纹理估计

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This study addresses the discrimination and characterization of sea-ice scenes using synthetic aperture radar (SAR) image texture. We develop a model for a second-order statistic, the autocorrelation function. This model is based on a phenomenological model of the radar scattering from sea ice in a marginal ice zone (MIZ) and a model of the SAR imaging system suitable for airborne geometries. These models are based on our understanding of the scene and system and become implicit assumptions in the subsequent texture analysis. In order to examine the validity of these assumptions we have developed an experimental methodology which is useful when doing texture analysis outside the domain of sea-ice scenes and airborne SAR geometries. This methodology involves two sets of experiments focused on the scene and system models. The first set of experiments demonstrated that the simple second-order SAR imaging model was appropriate for the airborne imaging geometry used in the collection of the SAR data. It was further shown that the sea ice responds to the SAR as diffuse targets and that the statistics of imagery with large processed bandwidths are very sensitive to errors in system focus. The second set of experiments pointed out the difficulty in testing for fully developed speckle with SAR image data. These experiments also demonstrated that several of the ice types did indeed respond to the SAR as non-Gaussian targets. A small percentage of pixels in the complex image data appeared to have correlated in-phase and quadrature components. However, the evidence allowing us to infer that partly developed speckle is the cause of these correlations is weak and ambiguous. [References: 38]
机译:这项研究使用合成孔径雷达(SAR)图像纹理解决了海冰场景的识别和表征。我们为二阶统计量(自相关函数)开发了一个模型。该模型基于雷达在边缘冰区(MIZ)中从海冰散射的现象学模型和适用于机载几何形状的SAR成像系统模型。这些模型基于我们对场景和系统的理解,并成为后续纹理分析中的隐含假设。为了检验这些假设的有效性,我们开发了一种实验方法,该方法在进行海冰场景和机载SAR几何形状之外的纹理分析时非常有用。该方法论涉及针对场景和系统模型的两组实验。第一组实验表明,简单的二阶SAR成像模型适用于SAR数据收集中使用的机载成像几何。进一步表明,海冰对SAR作为散射目标做出了响应,并且具有较大处理带宽的图像统计数据对系统聚焦误差非常敏感。第二组实验指出了使用SAR图像数据测试完全散斑的难度。这些实验还表明,几种冰确实确实对非高斯目标的SAR产生了响应。复杂图像数据中的一小部分像素似乎具有相关的同相和正交分量。但是,使我们推断出部分散斑是这些相关性的原因的证据是微弱而模棱两可的。 [参考:38]

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