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Time-series deformation monitoring over mining regions with SAR intensity-based offset measurements

机译:使用基于SAR强度的偏移量测量对采矿区域进行时间序列变形监测

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摘要

Underground mining can induce large vertical displacements that often lead to the loss of coherence in repeat-pass interferometric synthetic aperture radar (SAR) images. Using SAR intensity images, this paper employs the image offset tracking method to map SAR slant range changes due to ground deformation over areas of mining. The rationale of slant range offset measurement with respect to the vertical deformation is analysed and the prerequisite of applying the slant range offset method to monitor vertical deformation is discussed. Results from the slant range offset method are used to produce time-series of cumulative ground displacements via least square estimate. We use six Advanced Land Observation Satellite (ALOS)-Phased Array L-band SAR (PALSAR) images over two coalfields in Inner Mogolia, China, to illustrate the proposed method and its effectiveness. We achieve deformation measurements with a precision of ~0.2 m, with the maximum vertical displacement over the mining sites reaching ~4.5 m. Finally, we use time-series results to outline common features identified in mining-induced deformation. Our results are supported by in situ investigations.
机译:地下采矿会引起较大的垂直位移,这通常会导致重复通过干涉式合成孔径雷达(SAR)图像的相干性损失。利用SAR强度图像,本文采用图像偏移跟踪方法绘制了由于采矿区域地面变形引起的SAR斜距变化。分析了相对于垂直变形的斜距偏移量测量的原理,并讨论了应用斜距偏移量法监测垂直变形的前提。倾斜范围偏移法的结果用于通过最小二乘估计产生累积地面位移的时间序列。我们在中国内蒙古的两个煤田上使用了六张高级陆地观测卫星(ALOS)相控阵L带SAR(PALSAR)图像,以说明所提出的方法及其有效性。我们以〜0.2 m的精度实现变形测量,在采矿现场的最大垂直位移达到〜4.5 m。最后,我们使用时间序列结果来概述在采矿引起的变形中确定的常见特征。我们的结果得到了现场调查的支持。

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  • 来源
    《Remote sensing letters》 |2013年第6期|436-445|共10页
  • 作者单位

    College of Geology Engineering and Geomatics, Chang'an University Xian, Xian, China,Key Laboratory of Western China's Mineral Resources and Geological Engineering, Ministry of Education, Xian, China;

    Cascades Volcano Observatory, U.S. Geological Survey, Vancouver, WA, USA;

    College of Geology Engineering and Geomatics, Chang'an University Xian, Xian, China,Key Laboratory of Western China's Mineral Resources and Geological Engineering, Ministry of Education, Xian, China;

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