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Target detection by change for SAR imagery

机译:SAR影像变化检测目标

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Change detection provides a powerful means for the initial detection of small target objects of interest. However, speckle effects mean this type of approach can be difficult to apply to Synthetic Aperture Radar (SAR) imagery. This paper examines methods for object detection using change between a registered pair of SAR images.The techniques discussed are designed to detect change over small areas ranging in size from a few to perhaps a few hundred pixels. The techniques considered include the ratio of pixels and the ratio of variances covering small regions. The former is a straightforward approach and can provide a good performance baseline. The latter utilises the observation that many man-made objects have a somewhat spiky scattering response, the variance tends to capture this type of response and the ratio of variance enables comparison.Ideally any test statistic should be characterized by a known statistical distribution such that formal tests of a null hypothesis might be carried out. Here the null hypothesis corresponds to no change, and knowledge of the distribution of the test statistic enables the implementation of a Constant False-Alarm Rate (CFAR) detection process. The analysis carried out herein considers the distribution of the ratio statistics under realistic operating parameterisations for target detection in SAR imagery. Results are presented for a registered image pair in the form of detection maps. The simple ratio is found to be considerably more sensitive to image speckle than techniques covering small regions in the imagery.
机译:更改检测提供了一种强大的手段,可以对感兴趣的小型目标对象进行初始检测。但是,斑点效应意味着这种方法可能难以应用于合成孔径雷达(SAR)图像。本文探讨了使用一对已注册的SAR图像之间的变化进行物体检测的方法,所讨论的技术旨在检测尺寸范围从几像素到几百个像素的小区域的变化。所考虑的技术包括像素比率和覆盖小区域的方差比率。前者是一种简单的方法,可以提供良好的性能基准。后者利用了以下观察结果:许多人造物体的散射响应有些尖刻,方差往往会捕获这种类型的响应,并且方差比可以进行比较。理想情况下,任何测试统计量都应以已知的统计分布为特征,以可以对原假设进行检验。在这里,零假设与无变化相对应,并且通过了解测试统计信息的分布,可以实现恒定误报率(CFAR)检测过程的实现。本文中进行的分析考虑了在SAR图像中用于目标检测的实际操作参数设置下比率统计的分布。以检测图的形式显示配准图像对的结果。发现简单比率比覆盖图像中小区域的技术对图像斑点敏感得多。

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