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首页> 外文期刊>Geosciences >Ground Stability Monitoring of Undermined and Landslide Prone Areas by Means of Sentinel-1 Multi-Temporal InSAR, Case Study from Slovakia
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Ground Stability Monitoring of Undermined and Landslide Prone Areas by Means of Sentinel-1 Multi-Temporal InSAR, Case Study from Slovakia

机译:通过Sentinel-1多时相InSAR监测被破坏和滑坡易发地区的地面稳定性,来自斯洛伐克的案例研究

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Multi-temporal synthetic aperture radar interferometry techniques (MT-InSAR) are nowadays a well-developed remote sensing tool for ground stability monitoring of areas afflicted by natural hazards. Its application capability has recently been emphasized by the Sentinel-1 satellite mission, providing extensive spatial coverage, regular temporal sampling and free data availability. We perform MT-InSAR analysis over the wider Upper Nitra region in Slovakia, utilizing all Sentinel-1 images acquired since November 2014 until March 2017. This region is notable for its extensive landslide susceptibility as well as intensive brown coal mining. We focus on two case studies, being impaired by recent activation of these geohazards, which caused serious damage to local structures. We incorporate a processing chain based on open-source tools, combining the current Sentinel Application Platform (SNAP) and Stanford Method for Persistent Scatterers (StaMPS) implementation. MT-InSAR results reveal substantial activity at both case studies, exceeding the annual displacement velocities of 30 mm/year. Moreover, our observations are validated and their accuracy is confirmed via comparison with ground truth data from borehole inclinometers and terrestrial levelling. Detected displacement time series provide valuable insight into the spatio-temporal evolution of corresponding deformation phenomena and are thus complementary to conventional terrestrial monitoring techniques. At the same time, they not only demonstrate the feasibility of MT-InSAR for the assessment of remediation works, but also constitute the possibility of operational monitoring and routine landslide inventory updates, regarding the free Sentinel-1 data.
机译:如今,多时相合成孔径雷达干涉测量技术(MT-InSAR)是一种发达的遥感工具,可用于对自然灾害造成的地区进行地面稳定性监测。 Sentinel-1卫星任务最近强调了它的应用能力,提供了广泛的空间覆盖范围,定期的时间采样和免费的数据可用性。我们利用2014年11月至2017年3月期间获取的所有Sentinel-1图像,在斯洛伐克的上尼特拉地区进行了MT-InSAR分析。该地区以广泛的滑坡易感性和密集的褐煤开采而著称。我们专注于两个案例研究,这些案例由于这些地质灾害的近期激活而受到损害,这些地质灾害对当地结构造成了严重破坏。我们结合了基于开源工具的处理链,结合了当前的Sentinel应用程序平台(SNAP)和斯坦福永久性散射体方法(StaMPS)的实现。 MT-InSAR的结果表明,在两个案例研究中都有大量活动,超过了每年30毫米的位移速度。此外,通过与井眼测斜仪和地面水准仪的地面真实数据进行比较,我们的观测结果得到了验证,并证实了其准确性。检测到的位移时间序列为相应变形现象的时空演化提供了宝贵的见识,因此可作为常规地面监测技术的补充。同时,它们不仅展示了MT-InSAR在评估修复工作中的可行性,而且还提供了有关免费Sentinel-1数据的运营监控和例行滑坡清单更新的可能性。

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