首页> 外文会议>Instrumentation and Measurement Technology Conference, 2000. IMTC 2000. Proceedings of the 17th IEEE >Accuracy assessment in photo interpretation of remote sensing ERS-2/SAR images
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Accuracy assessment in photo interpretation of remote sensing ERS-2/SAR images

机译:遥感ERS-2 / SAR图像的照片解译精度评估

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Three major technological advances have occurred in recent years in the use of Synthetic Aperture Radar (SAR) for the study of geophysical processes. The first is the launch and excellent performance of ERS satellites, which permits the study of global-scale dynamic processes. The second is the development of airborne polarimeter SARs, which provides a far more complete picture of the scattering properties of the Earth's surface than the "simple" systems flown in space. The third is the inception of interferometric SAR, which allows high resolution topographic data to be generated from spaceborne and airborne SAR systems, and can detect centimetric changes in the Earth's surface. Going hand in hand with these advances, there have been major achievements in backscatter modeling, developing viable statistical models of the data and in image understanding techniques. In this work we study the applications of the above concepts in characterizing "crushed" soils in terms of accuracy assessment in images of part of Puglia Region in Italy.
机译:近年来在利用合成孔径雷达(SAR)来研究地球物理过程的三个主要技术进步。首先是卫星的发射和出色的性能,允许研究全球范围的动态过程。其次是,空气传播的偏振仪SARS的发展,它提供了比在空间飞扬的“简单”系统的地面表面的散射特性的更完整的图像。第三是干涉测量SAR的初始化,其允许从星载和空气传播的SAR系统产生高分辨率的地形数据,并且可以检测地球表面的厘米变化。随着这些进步携手并进,在反向散射建模方面存在重大成就,开发数据的可行统计模型以及图像理解技术。在这项工作中,我们研究了上述概念的应用,在意大利普利亚地区的一部分中的准确性评估方面表征“粉碎”土壤。

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