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The InSAeS4 airborne X-band interferometric SAR system: A first assessment on its imaging and topographic mapping capabilities

机译:InSAeS4机载X波段干涉SAR系统:对其成像和地形图绘制功能的首次评估

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摘要

We present in this work a first assessment of the imaging and topographic mapping capabilities of the InSAeS4 system, which is a single-pass interferometric airborne X-Band Synthetic Aperture Radar (SAR). In particular, we first provide a brief description of the InSAeS4 sensor. Then, we discuss the results of our analysis on the SAR and interferometric SAR products relevant to the first flight-test campaign. More specifically, we have exploited as reference the GPS measurements relevant to nine Corner Reflectors (CRs) deployed over the illuminated area during the campaign and a laser scanner Digital Elevation Model (DEM). From the analysis carried out on the CRs we achieved a mean geometric resolution, for the SAR products, of about 0.14 m in azimuth and 0.49 m in range, a positioning misalignment with standard deviation of 0.07 m in range and 0.08 m in azimuth, and a height error with standard deviation of 0.51 m. From the comparison with the laser scanner DEM we estimated a height error with standard deviation of 1.57 m.
机译:我们在这项工作中展示了InSAeS4系统的成像和地形图功能的首次评估,该系统是单程干涉机载X波段合成孔径雷达(SAR)。特别是,我们首先简要介绍InSAeS4传感器。然后,我们讨论与首次飞行测试活动相关的SAR和干涉式SAR产品的分析结果。更具体地说,我们在活动期间利用与在照明区域上部署的九个角反射器(CR)相关的GPS测量值和激光扫描仪数字高程模型(DEM)作为参考。通过对CR进行的分析,我们获得了SAR产品的平均几何分辨率,其方位角约为0.14 m,范围约为0.49 m,定位失准的范围为标准偏差0.07 m,方位角为0.08 m,并且标准偏差为0.51 m的高度误差。通过与激光扫描仪DEM的比较,我们估算出标准偏差为1.57 m的高度误差。

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