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Mitigation of atmospheric perturbations and solid Earth movements in a TerraSAR-X time-series

机译:在TerraSAR-X时间序列中减轻大气扰动和固体地球运动

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The TerraSAR-X (TSX) synthetic aperture radar (SAR) marks the recent emergence of a new generation of spaceborne radar sensors that can for the first time lay claim to localization accuracies in the sub-meter range. The TSX platform's extremely high orbital stability and the sensor's hardware timing accuracy combine to enable direct measurements of atmospheric refraction and solid Earth movements. By modeling these effects for individual TSX acquisitions, absolute pixel geolocation accuracy on the order of several centimeters can be achieved without need for even a single tiepoint. A 16-month time series of images was obtained over a fixed test site, making it possible to validate both an atmospheric refraction and a solid Earth tide model, while at the same time establishing the instrument's long-term stability. These related goals were achieved by placing trihedral corner reflectors (CRs) at the test site and estimating their phase centers with centimeter-level accuracy using differential GPS (DGPS). Oriented in pairs toward a given satellite track, the CRs could be seen as bright "points" in the images, providing a geometric reference set. SAR images from the highresolution spotlight (HS) mode were obtained in alternating ascending and descending orbit configurations. The highst-resolution products were selected for their small sample dimensions, as positions can be more precisely determined. Based on the delivered product annotations, the CR image positions were predicted, and these predictions were compared with their measured image positions both before and after compensation for atmospheric refraction and systematic solid Earth deviations. It was possible to show that when the atmospheric distortion and Earth tides are taken into account, the TSX HS products have geolocation accuracies far exceeding the specified requirements. Furthermore, this accuracy was maintained for the duration of the 16-month test period. It could be demonstrated that with a correctly calibrated sensor, and after accounting for atmospheric and tidal effects, tiepoint-free geolocation is possible with TSX with an absolute product accuracy of about 5 cm.
机译:TerraSAR-X(TSX)合成孔径雷达(SAR)标志着最近出现的新一代星载雷达传感器,该传感器首次可以声称亚米范围内的定位精度。 TSX平台具有极高的轨道稳定性和传感器的硬件定时精度,可以直接测量大气折射和固体地球运动。通过为单独的TSX采集建模这些效果,甚​​至不需要一个联络点就可以达到几厘米量级的绝对像素地理定位精度。在固定的测试地点获得了16个月的时间序列图像,从而可以验证大气折射和固体地球潮汐模型,同时建立仪器的长期稳定性。通过在测试位置放置三面角反射器(CR)并使用差分GPS(DGPS)以厘米级的精度估计其相心,可以实现这些相关目标。这些CR成对地朝向给定的卫星轨道定向,可以将它们视为图像中的明亮“点”,从而提供几何参考集。来自高分辨率聚光灯(HS)模式的SAR图像以交替的上升和下降轨道配置获得。选择了最高分辨率的产品是因为它们的样品尺寸小,因为可以更精确地确定位置。根据提供的产品注释,对CR图像位置进行了预测,并将这些预测值与补偿大气折射和系统的固体地球偏差前后的实测图像位置进行了比较。有可能表明,考虑到大气畸变和地球潮汐,TSX HS产品的地理位置精度远远超过了规定的要求。此外,在16个月的测试期间内保持了这种准确性。可以证明,使用正确校准的传感器,并考虑到大气和潮汐影响,TSX的绝对产品精度约为5 cm,可以实现无扎点的地理位置。

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