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首页> 外文期刊>Proceedings of the IEEE >Interferometric Synthetic Aperture Radar (SAR) Missions Employing Formation Flying
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Interferometric Synthetic Aperture Radar (SAR) Missions Employing Formation Flying

机译:利用编队飞行的干涉合成孔径雷达(SAR)任务

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This paper presents an overview of single-pass interferometric Synthetic Aperture Radar (SAR) missions employing two or more satellites flying in a close formation. The simultaneous reception of the scattered radar echoes from different viewing directions by multiple spatially distributed antennas enables the acquisition of unique Earth observation products for environmental and climate monitoring. After a short introduction to the basic principles and applications of SAR interferometry, designs for the twin satellite missions TanDEM-X and Tandem-L are presented. The primary objective of TanDEM-X (TerraSAR-X add-on for Digital Elevation Measurement) is the generation of a global Digital Elevation Model (DEM) with unprecedented accuracy as the basis for a wide range of scientific research as well as for commercial DEM production. This goal is achieved by enhancing the TerraSAR-X mission with a second TerraSAR-X like satellite that will be launched in spring 2010. Both satellites act then as a large single-pass SAR interferometer with the opportunity for flexible baseline selection. Building upon the experience gathered with the TanDEM-X mission design, the fully polarimetric L-band twin satellite formation Tandem-L is proposed. Important objectives of this highly capable interferometric SAR mission are the global acquisition of three-dimensional forest structure and biomass inventories, large-scale measurements of millimetric displacements due to tectonic shifts, and systematic observations of glacier movements. The sophisticated mission concept and the high data-acquisition capacity of Tandem-L will moreover provide a unique data source to systematically observe, analyze, and quantify the dynamics of a wide range of additional processes in the bio-, litho-, hydro-, and cryosphere. By this, Tandem-L will be an essential step to advance our understanding of the Earth system and its intricate dynamics. Enabling technologies and techniques are described in detail-n-n. An outlook on future interferometric and tomographic concepts and developments, including multistatic SAR systems with multiple receivers, is provided.
机译:本文概述了采用两枚或多枚以近距离编队飞行的卫星的单程干涉式合成孔径雷达(SAR)任务。通过多个空间分布的天线同时接收来自不同观察方向的散射雷达回波,可以获取用于环境和气候监测的独特地球观测产品。在简要介绍了SAR干涉测量的基本原理和应用之后,提出了双卫星任务TanDEM-X和Tandem-L的设计。 TanDEM-X(用于数字高程测量的TerraSAR-X附加组件)的主要目标是生成具有前所未有的精度的全球数字高程模型(DEM),作为广泛科学研究和商业DEM的基础生产。通过使用将于2010年春季发射的第二枚类似TerraSAR-X的卫星来增强TerraSAR-X的任务,可以实现此目标。然后,这两颗卫星都可以用作大型单程SAR干涉仪,并可以灵活选择基线。基于TanDEM-X任务设计的经验,提出了全极化L波段双卫星编队Tandem-L。这项功能强大的干涉式SAR任务的重要目标是全球获取三维森林结构和生物量清单,大规模测量由于构造位移引起的毫米波位移以及对冰川运动的系统观测。此外,Tandem-L先进的任务概念和高数据采集能力将提供独特的数据源,以系统地观察,分析和量化生物,岩性,水力,和冰冻圈。这样,Tandem-L将成为增进我们对地球系统及其复杂动力学的理解的重要步骤。启用技术和技术在n-n中进行了详细描述。提供了对未来干涉测量和层析成像概念和发展的展望,包括具有多个接收器的多静态SAR系统。

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