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LOS Displacements of Mauna Loa volcano, Hawaii Island, as determined using SBAS-InSAR

机译:使用SBAS-InSAR确定的夏威夷岛莫纳罗阿火山的LOS位移

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This paper presents an overview of the surface displacements retrieval capability of the Differential Synthetic Aperture Radar Interferometry algorithm, using Small Baseline Subset (SBAS) technique, in the context of active volcanic areas. Based on Sentinel-1A images, time series displacements fields of the Mauna Loa volcano area over a 2-year time interval (between 2015 and 2017) were received using batch processing. Based on 35 radar images, a total of 179 interferograms have been calculated. Methodology of Synthetic Aperture Radar (SAR) Sentinel-1 ESA satellite mission data processing with small base (SBAS) interferometric techniques from has been presented. The displacements calculated in the satellite’s Line of Sight (LOS) have been presented graphically on maps and graphs. Application of radar interferometry methods in the case of volcanic surface activity research creates new possibilities in the area of permanent monitoring of this type of areas.
机译:本文概述了在活火山地区的背景下,使用小基线子集(SBAS)技术的差分合成孔径雷达干涉测量算法的表面位移恢复能力。基于Sentinel-1A图像,使用批处理接收了两年时间间隔(2015年至2017年)中的莫纳罗阿火山地区的时间序列位移场。根据35幅雷达图像,总共计算出179张干涉图。提出了合成孔径雷达(SAR)Sentinel-1 ESA卫星任务数据处理的方法,该方法采用了小基站(SBAS)干涉技术。在卫星的视线(LOS)中计算出的位移已在地图和图形上以图形方式显示。在火山地表活动研究中,雷达干涉测量方法的应用为这种类型的区域进行永久监测创造了新的可能性。

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