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Bistatic and interferometric processing of TanDEM-X data

机译:TanDEM-X数据的双基地和干涉测量处理

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The German TanDEM-X mission flies the two satellites TerraSAR-X (TSX) and TanDEM-X (TDX) in a close orbit formation establishing a bistatic interferometer in space. Primary mission goal is the generation of a global Digital Elevation Model (DEM). The SAR data, jointly acquired by both satellites, are operationally processed by the Integrated TanDEM-X Processor (ITP). Processing comprises bistatic synchronization and focusing, filtering, co-registration, phase unwrapping and geocoding. Outputs are individual scene (50km × 30km) based digital elevation models (DEM) and co-registered phase preserving single look slant range complex SAR images (CoSSC). Furthermore, SAR data acquired in new and experimental acquisition modes, the second mission goal, are processed to CoSSCs as well. The experiences of more than one year TanDEM-X data processing and calibration have been incorporated as refinements of algorithms and workflows. The paper presents the operational ITP processing chain with a special focus on phase and delay corrections of the bistatic SAR raw data as well as algorithmic improvements with respect to phase unwrapping and tropospheric delay corrections.
机译:德国的TanDEM-X任务以密闭轨道飞行两颗TerraSAR-X(TSX)和TanDEM-X(TDX)卫星,在太空中建立了双基地干涉仪。首要任务目标是生成全球数字高程模型(DEM)。由两颗卫星共同获取的SAR数据由集成TanDEM-X处理器(ITP)进行操作处理。处理包括双基地同步和聚焦,滤波,共配准,相位展开和地理编码。输出是基于单个场景(50km×30km)的数字高程模型(DEM)和共同注册的相位保留单视斜距复杂SAR图像(CoSSC)。此外,以新的和实验性采集模式(第二个任务目标)采集的SAR数据也将处理到CoSSC。 TanDEM-X数据处理和校准超过一年的经验已被整合为算法和工作流程的改进。本文介绍了可操作的ITP处理链,特别关注双基地SAR原始数据的相位和延迟校正,以及在相位展开和对流层延迟校正方面的算法改进。

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