首页> 外文期刊>International journal of applied earth observation and geoinformation >Integrating geotechnical and SAR data for the monitoring of underground works in the Madrid urban area: Application of the Persistent Scatterer Interferometry technique
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Integrating geotechnical and SAR data for the monitoring of underground works in the Madrid urban area: Application of the Persistent Scatterer Interferometry technique

机译:整合岩土和SAR数据进行马德里市区地区地下工程的监测:持久性散射者干涉技术的应用

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摘要

The Differential Interferometric Synthetic Aperture Radar (DInSAR) is a powerful deformation control technique for civil engineering applications. However, the performance definition and limitations of the technique in tunneling works are far from being standardized. This work presents a thorough validation effort of the applicability of the Persistent Scatterer Interferometry (PSI) technique to the Madrid's M-30 tunneling works. A set of 26 Envisat images, covering from August 2003 to April 2008, were processed with two PSI techniques and the results were validated with on-ground measurements from leveling benchmarks and strips. The comparison of the deformations of more than 1500 control points has led to a global deformation difference of 2.6 mm RMS and 3.5 mm RMS with a coverage of the area of interest with persistent scatterers of 65% and 34% for the two PSI algorithms used. The limitations of the PSI technique when using SAR missions with low revisit time were shown. PSI has proven the potential to complement on ground monitoring techniques in tunneling works as soon as the limitations are overcome.
机译:差动干涉机合成孔径雷达(Dinsar)是用于土木工程应用的强大变形控制技术。但是,隧道工程中技术的性能定义和限制远非被标准化。这项工作介绍了持久散射者干涉测量(PSI)技术适用于马德里的M-30隧道作品的彻底验证。从2003年8月到2008年8月到2008年8月的一组26个Envisat图像进行了两个PSI技术,并通过平衡基准和条带进行了验证的地面测量结果。比较超过1500个控制点的变形的比较导致了2.6 mm rms的全局变形差,3.5 mm rms,其持续散射仪的覆盖率为65%和34%,对于所使用的两个PSI算法。显示了PSI技术在使用低重读时间的SAR任务时的局限性。 PSI证明,一旦克服限制,就已经证明了隧道工程中的地面监测技术的潜力。

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