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Detecting Subsidence in Coastal Areas by Ultrashort-Baseline TCPInSAR on the Time Series of High-Resolution TerraSAR-X Images

机译:基于高分辨率TerraSAR-X图像时间序列的超短基线TCPInSAR检测沿海地区的沉降

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In this paper, we present an improved approach of the multitemporal interferometric synthetic aperture radar (InSAR) for detecting land subsidence in coastal areas by using the time series of high-resolution SAR images. In particular, our algorithm extends the capability of the temporarily coherent point InSAR (TCPInSAR) technique that can be used to detect subsidence even in the case of a small number of SAR images available for a study area. The proposed approach is implemented by using the interferograms with ultrashort spatial baselines (USBs) through several procedures, including the selection of USB interferometric pairs, TCP identification, TCP networking and modeling, as well as TCP solution by a least squares estimator. As the topographic effects in coastal areas are negligible in the USB interferograms, an external digital elevation model is no longer necessary for differential processing, thus simplifying both TCP modeling and parameter estimating. The USB-based TCPInSAR algorithm has been tested with the high-resolution TerraSAR-X images acquired over Tianjin (close to Bohai Bay) in China, and validated by using the ground-based leveling measurements. The testing results indicate that the density and coverage extent of TCPs can be increased dramatically by using the proposed algorithm, and the quality of subsidence measurements derived by the USB-based TCPInSAR can be raised.
机译:在本文中,我们提出了一种改进的多时相干涉合成孔径雷达(InSAR)方法,该方法通过使用高分辨率SAR图像的时间序列来检测沿海地区的地面沉降。尤其是,我们的算法扩展了临时相干点InSAR(TCPInSAR)技术的功能,即使在研究区域有少量SAR图像的情况下,该技术也可用于检测沉降。通过采用具有超短空间基线(USB)的干涉图,通过几种程序来实现所提出的方法,包括选择USB干涉对,TCP识别,TCP网络和建模以及最小二乘估计器的TCP解决方案。由于USB干涉图中可以忽略沿海地区的地形影响,因此差分处理不再需要外部数字高程模型,从而简化了TCP建模和参数估计。基于USB的TCPInSAR算法已通过在中国天津(靠近渤海湾)采集的高分辨率TerraSAR-X图像进行了测试,并通过基于地面的水准测量进行了验证。测试结果表明,该算法可以显着提高TCP的密度和覆盖范围,并且可以提高基于USB的TCPInSAR产生的沉降测量的质量。

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