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Satellite SAR interferometric techniques in support to emergency mapping

机译:卫星SAR干涉技术支持紧急情况制图

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ABSTRACT This paper investigates the potential of Synthetic Aperture Radar (SAR) interferometry in the field of emergency mapping, assessing its suitability for both rapid mapping, aimed at supporting the immediate response phase after a disastrous event, and risk mapping, addressing risk prevention and mitigation activities. The conventional Differential Interferometric SAR technique (DInSAR) and the two currently available multi-temporal interferometric approaches, i.e. Permanent Scatterers (PS) and Small BAseline Subset (SBAS), have been evaluated focusing on the main emergency mapping requirements, namely crisis information product types, availability of optimal input data, requirements in terms of auxiliary data, processing time and expected accuracy. The aforementioned investigations have been carried out exploiting the European Space Agency (ESA) C-band Sentinel-1????mission, characterized by a free, full and open data policy. Therefore, this paper will not assess different SAR sensors and their different technical specifications, e.g. wavelength and space resolution. Representative results are presented and discussed with the aim to describe the possible interferometric product types in specific emergency mapping scenarios.
机译:摘要本文研究了合成孔径雷达(SAR)干涉术在紧急制图领域的潜力,评估了其对快速制图的适用性(旨在支持灾难事件后的立即响应阶段)和风险制图,以解决风险预防和缓解问题活动。评估了常规差分干涉SAR技术(DInSAR)和两种当前可用的多时间干涉测量方法,即永久散射体(PS)和小型BAseline子集(SBAS),重点关注主要的紧急制图要求,即危机信息产品类型,最佳输入数据的可用性,对辅助数据的要求,处理时间和预期的准确性。上述研究是利用欧洲航天局(ESA)的C波段Sentinel-1任务进行的,该任务的特点是免费,完整和开放的数据政策。因此,本文将不会评估不同的SAR传感器及其不同的技术规格,例如波长和空间分辨率。提出并讨论了代表性的结果,目的是描述特定紧急情况制图方案中可能的干涉仪产品类型。

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