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Deformation Trend Extraction Based on Multi-Temporal InSAR in Shanghai

机译:基于多时相SAR的上海市变形趋势提取

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Shanghai is a modern metropolis characterized by high urban density and anthropogenic ground motions. Although traditional deformation monitoring methods, such as GPS and spirit leveling, are reliable to millimeter accuracy, the sparse point subsidence information makes understanding large areas difficult. Multiple temporal space-borne synthetic aperture radar interferometry is a powerful high-accuracy (sub-millimeter) remote sensing tool for monitoring slow ground deformation for a large area with a high point density. In this paper, the Interferometric Point Target Time Series Analysis method is used to extract ground subsidence rates in Shanghai based on 31 C-Band and 35 X-Band synthetic aperture radar (SAR) images obtained by Envisat and COSMO SkyMed (CSK) satellites from 2007 to 2010. A significant subsidence funnel that was detected is located in the junction place between the Yangpu and the Hongkou Districts. A t-test is formulated to judge the agreements between the subsidence results obtained by SAR and by spirit leveling. In addition, four profile lines crossing the subsidence funnel area are chosen for a comparison of ground subsidence rates, which were obtained by the two different band SAR images, and show a good agreement.
机译:上海是一个现代化的大都市,具有高城市密度和人为地震动的特征。尽管传统的变形监测方法(例如GPS和水平仪)对于毫米精度是可靠的,但是稀疏点沉降信息使了解大面积区域变得困难。多时间星载合成孔径雷达干涉仪是一种功能强大的高精度(亚毫米)遥感工具,可用于监测大面积高密度区域的缓慢地面变形。本文利用Envisat和COSMO SkyMed(CSK)卫星获得的31个C波段和35个X波段合成孔径雷达(SAR)图像,使用干涉点目标时间序列分析方法提取了上海的地面沉降率。 2007年至2010年。在杨浦区和虹口区之间的交界处发现了一个重要的沉降漏斗。制定了t检验来判断SAR和水平仪获得的沉降结果之间的一致性。此外,选择了四个通过沉降漏斗区域的轮廓线来比较地面沉降率,该沉降率是通过两个不同波段的SAR图像获得的,显示出很好的一致性。

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