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Bistatic SAR Imaging Geometry Performance Metric

机译:双基地SAR成像几何性能指标

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摘要

Two bistatic SAR image quality metrics are postulated. The combination of the two metrics provide a quick and computationally non-intensive means of predicting bistatic SAR image quality as a function of collection geometry. The metrics are based on local orthogonality criteria. By noting the fact that all SAR imaging techniques essentially map the downrange and Doppler frequency onto the image plane, it is observed that the downrange and crossrange direction vectors can be obtained via the gradients of the isorange and isoDoppler contours respectively. Using the criteria that maximum image information content is obtained if the downrange and crossrange directions are orthogonal, a metric is postulated which relates the isorange and isoDoppler contour grandients in such a way as to be maximum under such orthogonal conditions. A secondary measure of merit is also postulated related to isoDoppler contour density and crossrange resolution for a given CPI. A good qualitative correlation between the image metrics and reconstructed images of a representative collection of point scatterers was shown to exist.
机译:假定了两个双基地SAR图像质量指标。这两个指标的组合提供了一种快速而无需计算的密集方式,可以预测双基地SAR图像质量随收集几何形状的变化。度量基于局部正交性标准。通过注意到所有SAR成像技术实际上都将下距离和多普勒频率映射到像面上这一事实,可以观察到下距离和跨范围方向矢量可以分别通过isorange和isoDoppler轮廓的梯度获得。使用这样的标准:如果下范围和跨范围方向是正交的,则获得最大的图像信息含量,假定度量以等正交条件下最大的方式关联等距和等多普勒轮廓梯度。对于给定的CPI,还假定了与isoDoppler轮廓密度和跨范围分辨率有关的次要性能指标。图像度量与点散射的代表性集合的重构图像之间存在良好的定性相关性。

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