首页> 外文期刊>Journal of Applied Remote Sensing >Accuracy verification and evaluation of Sentinel-1A repeat track differential interferometric synthetic aperture radar in monitoring mining subsidence
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Accuracy verification and evaluation of Sentinel-1A repeat track differential interferometric synthetic aperture radar in monitoring mining subsidence

机译:监测矿井沉积术中哨兵-1A重复轨道差速干涉合成孔径雷达的精度验证与评价

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摘要

The accuracy of differential interferometric synthetic aperture radar (DInSAR) in monitoring the ground subsidence is a major challenge to be addressed urgently. Using the repeat track DInSAR and GIS spatial analysis tools, eight C-band Sentinel-1A SAR images of the Guotun coal mine (China) were processed to determine the mining subsidence from November 27, 2015 to July 24, 2016. The mining data of 13 working faces and the DInSAR-and leveling-monitored results were compared. A method was proposed to solve the problem of time inconsistency between DInSAR-and leveling-monitored results. The location, spatial distribution, scope, and variations of mining subsidence monitored by Sentinel-1A repeat track DInSAR were consistent with the mining progress of the working faces. The accuracy of the DInSAR-monitored subsidence values was directly related to the coherence of the subsidence zones, and the absolute difference from the leveling-monitored values was small at the subsidence edge but large at the subsidence center. (C) The Authors. Published by SPIE under a Creative Commons Attribution 4.0 Unported License.
机译:在监测地面沉降中进行差动干涉性合成孔径雷达(DINSAR)的准确性是迫切需要解决的主要挑战。使用重复轨道DINSAR和GIS空间分析工具,加工了八个C频段Sentinel-1A SAR SAM SAR SAR SAR SAM SAR SAR SAR SAM SAR IMACTION,从2015年11月27日至2016年7月24日决定了矿业押业。采矿数据比较了13个工作面和Dinsar-and Lifeting监测结果。提出了一种方法来解决Dinsar-and Letering监测结果之间的时间不一致的问题。由Sentinel-1a重复轨道Dinsar监测的采矿沉降的位置,空间分布,范围和变化与工作面的开采进度一致。 Duinsar监测沉降值的准确性与沉降区的一致性直接相关,并且沉降中心的平调监测值的绝对差异小,但沉降中心大。 (c)作者。由SPIE出版,根据创意公约归因于4.0未受平许可。

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