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Tianjin Suburbs Subsidence Monitoring with L- and X-band Multi-temporal InSAR Data.

机译:使用L波段和X波段多时相InSAR数据监测天津郊区沉降。

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摘要

The aim of this dissertation is to enhance the capability of monitoring subsidence in Tianjin suburbs by combining L- and X-band Synthetic Aperture Radar (SAR) data with Interferometry (InSAR) time series analysis. Tianjin is located in one of the major subsidence regions in China and several new subsiding centers have been found in the suburbs of Tianjin. Advanced remote sensing technique, Permanent Scatterers (PS) based on SAR data has been found to be a feasible way to detect and monitor wide area ground subsidence at a low cost.;TerraSAR X-band (TSX) of short wavelength (3.1 cm) provides new generation SAR data with high spatial resolution of 1 m and short revisit period of 11 days. It maintains the capability to fast build up interferometric stack, and to measure the subsidence of individual features, while almost no information can be detected with X-band in the forested and vegetated areas. ALOS L-band signal of longer wavelength (23cm) penetrates deeper into the vegetation cover and depicts higher coherence over non-urban areas, while the spatial resolution is relatively lower (7m) and revisit time is longer (46 days). The characteristics of these two bands can be regarded as complementary. Combining L- and X-band can enhance abilities of subsidence monitoring and provide more reliable results. Although ALOS died on April 22, 2011, this research work will provide general answers for combining different bands of SAR data to monitor subsidence, and give suggestions for future research work.;In this research work, we have developed the strategy of combining L- and X-band with InSAR time series analysis. This strategy can not only be an optimized X-band acquisition plan, but also be a multi-level wide area monitoring strategy of subsidence with fast extraction, high precision and low cost.;Moreover, with multi-temporal SAR data, we also investigate monitoring abilities of L- and X-band by exploring PS and Quasi-PS (QPS) techniques. The subsidence patterns derived from L- and X-band InSAR time series analysis are observed to have a good agreement. Three severe land subsidence zones were detected, containing one newly discovered subsiding center located in Nanhe Town.;The X-band PS analysis shows high density of PS points and confirms its strong ability for simultaneously monitoring subsidence over star-like-distributed multiple towns. The results also demonstrate that linear constructions such as railways, highways and power lines can be detected in detail with high resolution TSX SAR data and indicates the deformation monitoring capability for large-scale man-made linear features which is a key application in China.;Furthermore, L- and X-band results were independently validated with leveling data and ground motion processes were studied. The uncertainties were comprehensively analyzed between PS results and ground leveling data, whose densities are very different in both spatial and temporal domains. The overall results show a good agreement with each other.;Finally, we find that underground water extraction is one of the major reasons for ground subsidence in Tianjin. In addition, with the integrated analysis of the PS results and the geological data, we found that lithological characteristics may be another important reason to explain location and shape of the subsiding centers.;Key words: Tianjin Suburbs; subsidence monitoring; Permanent Scatterers (PS); Quasi-PS (QPS); L-band; X-band.
机译:本文的目的是通过将L波段和X波段合成孔径雷达(SAR)数据与干涉测量(InSAR)时间序列分析相结合,提高天津郊区的沉降监测能力。天津位于中国主要的沉降区之一,在天津郊区发现了几个新的沉降中心。先进的遥感技术,基于SAR数据的永久散射体(PS)已被发现是一种以低成本检测和监视广域地面沉降的可行方法。短波长(3.1 cm)的TerraSAR X波段(TSX)提供新一代SAR数据,具有1 m的高空间分辨率和11天的短访问时间。它保持了快速建立干涉仪堆栈并测量单个特征下陷的能力,而在森林和植被覆盖的地区,利用X波段几乎无法检测到任何信息。更长波长(23厘米)的ALOS L波段信号更深地穿透植被覆盖,并在非城市区域表现出更高的相干性,而空间分辨率相对较低(7m),而重访时间更长(46天)。这两个频带的特性可以看作是互补的。结合使用L波段和X波段可以增强沉降监测的能力,并提供更可靠的结果。尽管ALOS于2011年4月22日去世,但这项研究工作将为合并不同波段的SAR数据以监测沉降提供一般性的答案,并为未来的研究工作提供建议。在此研究工作中,我们制定了将L-和X波段带InSAR时间序列分析。该策略不仅可以作为一种优化的X波段采集方案,而且可以作为一种快速提取,高精度,低成本的沉降多级广域监测策略。此外,对于多时相SAR数据,我们也进行了研究。通过探索PS和准PS(QPS)技术来监视L和X波段的能力。观察到从L波段和X波段InSAR时间序列分析得出的沉降模式具有良好的一致性。在南河镇发现了三个严重的地面沉降区,其中包括一个新发现的沉降中心。X波段PS分析显示出PS点的密度很高,并证实了其具有同时监测星状分布的多个城镇沉降的强大能力。结果还表明,利用高分辨率的TSX SAR数据可以详细检测出诸如铁路,公路和电力线等线性结构,并表明了对大型人造线性特征的变形监测能力,这在中国是一个关键应用。此外,L和X波段的结果通过水准数据独立验证,并研究了地面运动过程。对PS结果与地面平整数据之间的不确定性进行了综合分析,其密度在时空范围内差异很大。总体结果显示出良好的一致性。最后,我们发现地下水开采是天津地面沉降的主要原因之一。此外,通过对PS结果和地质数据的综合分析,我们发现岩性可能是解释沉降中心位置和形状的另一个重要原因。沉降监测;永久散射体(PS);准PS(QPS); L波段X波段。

著录项

  • 作者

    Luo, Qingli.;

  • 作者单位

    The Chinese University of Hong Kong (Hong Kong).;

  • 授予单位 The Chinese University of Hong Kong (Hong Kong).;
  • 学科 Geodesy.;Remote Sensing.;Geography.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 133 p.
  • 总页数 133
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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