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Recent advancements in multi-temporal methods applied to new generation SAR systems and applications in South America

机译:南美洲新一代SAR系统应用于多时间方法的最新进展

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摘要

Detection and continuous monitoring of Earth's ground surface changes, triggered by natural phenomena or induced by human activities, is nowadays possible using Earth Observation (EO) technologies. Indeed, the exploitation of remotely sensed data collected by constellations of new-generation satellite platforms, complemented with in-situ measurements and ground-based observation systems, represents a well-established practice to get valuable information on Earth's crust and subsurface dynamics. The effects of extreme natural or man-induced events (e.g., earthquakes, volcanic eruptions, flooding phenomena, sea-level rise, big fires, etc.) have severe societal and economic impacts. In particular, the technologies based on the use of Synthetic Aperture Radar (SAR) images reached significant improvements in the last decade due to the growing availability of vast amounts of data collected by multiple-satellite sensors operating at different frequency bands and with complementary viewing angles, polarization and acquisition modes. Accordingly, to process a large amount of SAR data in a timely fashion, up-to-date high-performance computing (HPC) methods and tools are required. This paper addresses the state-of-the-art of SAR technologies for the analysis of long sequences of multiple sets of SAR images and provides a perspective on the forthcoming improvements of these technologies. In particular, the emphasis is placed on novel interferometric SAR and change detection methods, giving an overview of how those processing techniques have been used for investigating sites located in South and Central America. Moreover, an overview of the new generation of SAR sensors' observational capability, especially in the field of ground deformation analysis for mitigating the risk associated with natural and human-induced hazards, is provided. COSMO-SkyMed, ALOS, Sentinel-1, and SAOCOM data are exploited to show how natural and human-induced terrain displacement phenomena can be detected and investigated in different portions (X-, L- and C-band) of the microwave spectrum using SAR technologies.
机译:通过自然现象引发或者人类活动引发的地球地表变化的检测和连续监测现在可以使用地球观察(EO)技术。实际上,利用由原位测量和基于地基观察系统的新一代卫星平台集团收集的远程感测的数据,代表了一种熟悉的实践,以获得地壳和地下动态的宝贵信息。极端自然或人诱导的事件的影响(例如,地震,火山喷发,洪水现象,海平面上升,大火等)具有严重的社会和经济影响。特别地,基于合成孔径雷达(SAR)图像的技术在过去十年中达到了显着的改进,因为由于在不同频带处运行的多卫星传感器和互补的观察角度而产生的大量数据越来越多的数据而产生了大量数据,极化和采集模式。因此,为了及时处理大量SAR数据,需要最新的高性能计算(HPC)方法和工具。本文讨论了SAR技术的最先进的技术,用于分析多组SAR图像的长序列,并在即将到来的这些技术的改进方面提供了一种观点。特别地,重点放在新型干涉测量SAR和变化检测方法上,概述了这些加工技术如何用于调查位于南部和中美洲的地点。此外,提供了新一代SAR传感器观测能力的概述,特别是在用于减轻与自然和人诱导的危害相关的风险的地面变形分析领域。利用Cosmo-Skymed,Alos,Sentinel-1和Saocom数据,以展示如何在微波谱的不同部分(X-,L和C波段)中检测到自然和人类诱导的地形位移现象SAR技术。

著录项

  • 来源
    《Journal of South American earth sciences》 |2021年第11期|103410.1-103410.17|共17页
  • 作者单位

    Univ Nacl Cuyo Fac Ingn Inst CEDIAC Mendoza Argentina|Consejo Nacl Invest Cient & Tecn Buenos Aires DF Argentina;

    Univ Nacl Cuyo Fac Ingn Inst CEDIAC Mendoza Argentina|Consejo Nacl Invest Cient & Tecn Buenos Aires DF Argentina;

    Natl Res Council Italy CNR Inst Electromagnet Sensing Environm IREA I-80124 Naples Italy;

    Univ Basilicata Sch Engn I-85100 Potenza Italy;

    Natl Res Council Italy CNR Inst Electromagnet Sensing Environm IREA I-80124 Naples Italy|Univ Basilicata Sch Engn I-85100 Potenza Italy|Natl Res Council Italy CNR Inst Methodol Environm Anal IMAA I-85050 Tito Italy;

    Natl Res Council Italy CNR Inst Electromagnet Sensing Environm IREA I-80124 Naples Italy;

    Chinese Acad Sci Aerosp Informat Res Inst AIR Key Lab Digital Earth Sci Beijing Peoples R China;

    Univ Nacl Cuyo Fac Ingn Inst CEDIAC Mendoza Argentina|Consejo Nacl Invest Cient & Tecn Buenos Aires DF Argentina;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    InSAR; Ground deformation; Multi-pass interferometry; Sentinels; SAR instruments; Satellite constellations;

    机译:insar;地面变形;多通干扰测量;哨兵;SAR仪器;卫星星座;

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