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On the influence of sub-pixel position correction for PS localization accuracy and time series quality

机译:关于PS定位精度和时间序列质量的子像素位置校正的影响

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摘要

Persistent Scatterer Interferometry (PSI) is a time series remote sensing technique to estimate displacements of geo-objects from the interferometric phases of selected Persistent Scatterers (PS). The relative position of a scatterer within a resolution cell causes an additional phase contribution in the observed phase, which needs to be accounted for in PSI processing. Here we analyze the influence of this sub-pixel position correction on point localization and displacement quality. Apart from a theoretical evaluation, we perform experiments with TerraSAR-X, Radarsat-2, and Sentinel-1, demonstrating various levels of improvement. We show that the influence of the sub-pixel correction is significant for the geolocation of the scatterer (meter-level improvement), modest for the elevation estimation (centimeter-level improvement), and limited for the displacement estimation (submillimeter-level). For displacement velocities, we find variations of a few tenths of a millimeter per year. The effect of sub-pixel correction is most dominant for large orbital baselines and short time series.
机译:持久性散射器干涉测量(PSI)是一种时间序列遥感技术,用于从所选持久散射体(PS)的干涉阶段估计地质对象的位移。分辨率单元内的散射器的相对位置导致观察到的阶段中的附加阶段贡献,这需要在PSI处理中占用。在这里,我们分析了该子像素位置校正对点定位和位移质量的影响。除了理论评价之外,我们通过Terrasar-X,Radarsat-2和Sentinel-1进行实验,展示了各种改进水平。我们表明,子像素校正的影响对于散射体(仪表级改进)的地理位置,适用于高度估计(厘米级改进),并且限制为位移估计(淹没仪级)。对于位移速度,我们发现每年几十毫秒的变化。用于大型轨道基线和短时间序列的副像素校正的效果最多。

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