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Spaceborne D-InSAR system: Conceptual overview

机译:Spareborne D-Insar系统:概念概述

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Spaceborne D-InSAR system is a kind of SAR satellite system aiming at differential interferometry application. It provides us a capability of measuring subtle deformation on the ground with phase difference. Different from existing satellite SAR missions, during the system conceptual design period, the primary objectives is improving the deformation measurement accuracy of the system. This paper is an overall conceptual description of the system, which paves the way for future research works. First of all, the system performance analysis is the key point as a theoretical foundation. The mathematical analysis model should have two typical characters. On one hand, various practical engineering errors in SAR satellite system need to be considered in mathematical modeling work. On the other hand, how to balance conventional 2/3-pass D-InSAR mode with time-series Persistent Scatterer D-InSAR mode is a big challenge. When we finish the model, experimental verification is also needed. Secondly, the satellite constellation configuration has to be designed to evaluate the system observation capability. Of course, we have to sort out the potential industry applications of the system in all kinds of modes that the system can achieve.
机译:Spablborne D-Insar系统是一种针对差动干涉式应用的SAR卫星系统。它为我们提供了一种在地面上测量微妙变形的能力。与现有卫星SAR任务不同,在系统概念设计期间,主要目标是提高系统的变形测量​​精度。本文是该系统的整体概念描述,为未来的研究工作铺平了道路。首先,系统性能分析是作为理论基础的关键点。数学分析模型应该有两个典型的字符。一方面,在数学建模工作中需要考虑SAR卫星系统中的各种实际工程错误。另一方面,如何使用时间序列持久散射器D-Insar模式平衡传统的2/3通过D-Insar模式是一个很大的挑战。当我们完成模型时,还需要实验验证。其次,必须设计卫星星座配置来评估系统观察能力。当然,我们必须在系统可以实现的各种模式下整理系统的潜在行业应用。

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