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AN ENCOUNTER WITH PURSUIT MONOSTATIC APPLICATIONS OF TANDEM-X MISSION

机译:追求单声道应用的持续单声道应用

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From October 2014 to February 2015, TerraSAR-X and TanDEM-X satellites operated in a Pursuit Monostatic formation, in which independent images were acquired with a temporal separation of 10 seconds, and an along track baseline of approximately 76 km, at a maximum effective baseline of 750 m [1]. In this phase, in order to support interferometric acquisitions of the same footprint on the ground, TanDEM-X orbit was adjusted, while TerraSAR-X remained unaffected relative to its reference orbit. In preparation for a potential multi-mission Pursuit Monostatic formation following the end of the TanDEM-X science phase between TanDEM-X satellites and Spanish satellite PAZ [2], several new imaging acquisition arrangements with the current operational modes were investigated. The performances and effectiveness of these new SAR applications were evaluated. In this paper we provide a brief summary of these new configuration scenarios. Primary examples demonstrate the potential of the monostatic formation for new imaging arrangements, such as wider swath or longer images by combination of two parallel or adjacent SAR scenes. Also, immediate repeat pass interferometric acquisitions for creation of digital elevation models (DEM) with minimal temporal delay were successfully tested. In here, in addition in comparison to TanDEM-X bistatic configuration, the characteristic and limitation imposed by the 10 seconds delay of the repeat-pass temporal decorrelation [3] is examined in a case scenario acquired over forested areas.
机译:从2014年10月到2015年2月,在追求单体形成中运营的Terrasar-X和Tandem-X卫星,其中在时间分离10秒的独立图像,并且沿着约76公里的轨道基线,最大值基线750 m [1]。在该阶段,为了支持地面上相同占地面积的干涉测量,调整了TANDEM-X轨道,而Terrasar-X相对于其参考轨道仍未受到影响。在串联X卫星和西班牙卫星PAZ之间的串联X科学阶段结束后准备潜在的多项任务追求单体形成[2],研究了具有当前操作模式的几种新的成像采集布置。评估了这些新SAR应用的性能和有效性。在本文中,我们提供了这些新配置方案的简要摘要。主要示例展示了新成像装置的单色形成的潜力,例如通过两个平行或相邻的SAR场景组合宽的血管或更长的图像。此外,成功测试了用于创建数字高程模型(DEM)的立即重复通过干涉机采集,以最小的时间延迟进行最小的时间延迟。在这里,除了与Tandem-X双结构的比较中,在通过森林区域获得的情况下,在造型场景中检查了10秒延迟的10秒延迟[3]的特性和限制。

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