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Space-based surface change detection with differential synthetic-aperture radar (SAR) interferometry: Potentialities and Preliminary Investigations

机译:基于差分合成孔径雷达(SAR)干涉测量的天基表面变化检测:潜力和初步研究

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The capability of measuring small crustal deformation by means of differential Synthetic Aperture Radar (SAR) interferometry (DIFSAR) is investigated in this work. After outlining the mathematical background inherent to the principles of differential SAR interferometry and showing the potential and limits of the information content of spaceborne DIFSAR data, the analysis of the impact of this technique is carried out on some interferometric couples gathered in 1996 by the ERS-1/ERS-2 (European Remote Sensing Satellite) tandem mission. The imaged scene is a portion of the Sannio-Matese mountainous area (Southern Italy). Suitable interferometric couples are processed and analyzed in order to show potentialities of detecting surface efformation by means of DIFSAR data, and derive qualitative information on the relationship between DIFSAR-based change detection and the time scale of crustal dynamics, by investigating the effectiveness of the technique as a function of the scene coherence. Preliminary results confirm the feasibility of the technique, even at the cost of sophisticated processing and careful error analysis.
机译:在这项工作中,研究了通过差分合成孔径雷达(SAR)干涉测量法(DIFSAR)测量小地壳变形的能力。在概述了差分SAR干涉法原理固有的数学背景并显示了星载DIFSAR数据的信息内容的潜力和局限性之后,对该技术的影响进行了分析,由ERS-于1996年收集, 1 / ERS-2(欧洲遥感卫星)串联任务。成像的场景是Sannio-Matese山区(意大利南部)的一部分。为了显示利用DIFSAR数据检测表面形貌的潜力,并通过研究该技术的有效性,得出了基于DIFSAR的变化检测与地壳动力学时间尺度之间关系的定性信息,对适当的干涉对进行了处理和分析。根据场景的连贯性。初步结果证实了该技术的可行性,即使以复杂的处理和仔细的错误分析为代价。

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