首页> 外文会议>Geoscience and Remote Sensing Symposium, 2003. IGARSS '03. Proceedings. 2003 IEEE International >Options for high-precision motion compensation for airborne differential SAR interferometry
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Options for high-precision motion compensation for airborne differential SAR interferometry

机译:机载差分SAR干涉测量的高精度运动补偿选项

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Differential interferometry using space-borne SAR sensors has become an established technique for detecting and monitoring centimetre-scale deformations of the Earth's surface, as well as glacier flows and land slides. Although often very efficient, the use of space-borne SAR data has several drawbacks, namely phase artifacts caused by atmospheric effects and very low coherence due to long data acquisition intervals. Airborne sensors on the other hand may overcome most of the problems mentioned above and provide a much higher flexibility in sense of spatial resolution, used wavelength and data acquisition. However, the use of airborne sensors has been prevented by insufficiently accurate motion compensation of the sensor platform. In this paper, the performance and deficiencies of the different approaches for estimation of residual motion errors are compared and evaluated, in the face of their application in airborne differential SAR interferometry. Some preliminary results of airborne differential SAR interferometry, obtained using an optimised motion compensation scheme, will also be shown. The analysis carried out in this paper is based on repeat-pass interferometric data acquired by DLR's experimental SAR system (E-SAR) in L-band.
机译:使用星载SAR传感器的差分干涉测量技术已成为一种成熟的技术,可用于检测和监视地球表面厘米级的形变以及冰川流动和滑坡。尽管通常效率很高,但使用星载SAR数据有几个缺点,即由大气效应引起的相位伪像,以及由于长数据采集间隔而导致的非常低的相干性。另一方面,机载传感器可以克服上述大多数问题,并在空间分辨率,使用的波长和数据采集方面提供更高的灵活性。但是,由于传感器平台的运动补偿不够准确,因此无法使用机载传感器。鉴于其在机载差分SAR干涉测量中的应用,本文比较和评估了不同方法在估计残余运动误差方面的性能和不足。还将显示使用优化的运动补偿方案获得的机载差分SAR干涉测量的一些初步结果。本文进行的分析是基于DLR的实验性SAR系统(E-SAR)在L波段获得的重复通过干涉数据。

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