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首页> 外文期刊>International journal of remote sensing >Comparison of different atmospheric phase screen correction models in ground-based radar interferometry for landslide and open-pit mine monitoring
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Comparison of different atmospheric phase screen correction models in ground-based radar interferometry for landslide and open-pit mine monitoring

机译:不同大气相筛网校正模型在地面雷达干涉测量中的山坡和露天矿井监测的比较

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摘要

Although the atmospheric compensation models developed to date have been generally robust and effective for InSAR, how to choose the right atmospheric correction method for ground-based InSAR is worth studying. This paper uses different methods for atmospheric phase screen (APS) compensation based on studies of ground-based radar (GBR) to zero-baseline acquisitions over the Woda landslide in Sichuan, China. This landslide has a steep topography, thick fog, turbulent rivers and strong rains. Data were acquired at the Ku-band using a GAMMA Portable Radar Interferometer II (GPRI-II) in multiple campaigns (4 July 2019-13 July 2019). In 2019, the Miyun open-pit mine was also studied; the maximum deformation reached 4.03 mm/hour. The collected data were processed within one unit based on the small baseline set (SBAS) approach. The experimental results show the following (1) For long-distance monitoring with complex atmospheric disturbances, range- and/or height-dependent models fail. (2) The iterative decomposition (ITD) method can effectively address complex atmospheric disturbances. (3) If the threshold of wavelength is set to be large, the ITD method becomes a stratified model.
机译:虽然迄今为止开发的大气补偿模型一般对Insar的稳健而有效,但如何选择基于地面的Insar的正确大气校正方法值得研究。本文采用了基于地面雷达(GBR)的研究基于地面雷达(GBR)的大气相屏幕(APS)补偿方法,以零基线在中国沃达滑坡上的零基线收购。这款滑坡具有陡峭的地形,厚厚的雾,湍流河流和强降雨。在Ku波段使用多个活动中的伽马便携式雷达干涉仪II(GPRI-II)在Ku波段中获得数据(2019年7月4日2019年7月4日)。 2019年,宫云露矿也被研究;最大变形达到4.03毫米/小时。基于小基线组(SBA)方法,在一个单元内处理收集的数据。实验结果表明,具有复杂的大气干扰,范围和/或高度依赖模型的长距离监测的以下(1)失效。 (2)迭代分解(ITD)方法可以有效地解决复杂的大气干扰。 (3)如果波长的阈值设置为大,则ITD方法变为分层模型。

著录项

  • 来源
    《International journal of remote sensing》 |2021年第16期|5935-5952|共18页
  • 作者单位

    Minist Emergency Management China Natl Inst Nat Hazards Beijing Peoples R China;

    Minist Emergency Management China Natl Inst Nat Hazards Beijing Peoples R China;

    Minist Emergency Management China Natl Inst Nat Hazards Beijing Peoples R China;

    Minist Emergency Management China Natl Inst Nat Hazards Beijing Peoples R China;

    Minist Emergency Management China Natl Inst Nat Hazards Beijing Peoples R China;

    Minist Emergency Management China Natl Inst Nat Hazards Beijing Peoples R China;

    Minist Emergency Management China Natl Inst Nat Hazards Beijing Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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