首页> 外文会议>IEEE International Geoscience and Remote Sensing Symposium;IGARSS 2013;International Geoscience and Remote Sensing Symposium >A REFINED GEOMETRIC CORRECTION ALGORITHM FOR SPOTLIGHT AND SLIDING SPOTLIGHT SPACEBORNE SAR
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A REFINED GEOMETRIC CORRECTION ALGORITHM FOR SPOTLIGHT AND SLIDING SPOTLIGHT SPACEBORNE SAR

机译:一种聚焦和滑动聚光灯太空载算法的精制几何校正算法

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摘要

In this paper, a novel algorithm of geometric correction for spotlight and sliding spotlight SAR is presented. Synthetic Aperture Radar (SAR), which is independently of weather and light conditions, is a well-established imaging technique for remote sensing [1]. With the increasing demands for higher resolution, spotlight and sliding spotlight modes have been presented. The key requirement for understanding SAR image is to map the location of pixels accurately, and this requires a more accurate geometric correction algorithm to assure the quality of spotlight and sliding spotlight SAR image products [2]. In 1982, a Range-Doppler location method, which is effective for stripmap SAR, has been presented by John C. Curlander [3], but it's not effective for spotlight and sliding spotlight SAR. Considering the imaging process model [4], the space-time mapping relationship and the space-frequency mapping relationship, we have modified the location equations to improve the geometric correction for spotlight and sliding spotlight SAR. The simulation result shows the validity of the algorithm.
机译:本文提出了一种对聚光灯和滑动聚光灯SAR的几何校正算法。合成孔径雷达(SAR)独立于天气和光线条件,是一种用于遥感的良好的成像技术[1]。随着对更高分辨率的需求越来越多,占据了焦点和滑动聚光灯模式。理解SAR图像的关键要求是准确地映射像素的位置,这需要更准确的几何校正算法来确保聚光灯和滑动聚光灯SAR图像产品的质量[2]。 1982年,John C. Cllander [3]介绍了一种对Riblemap SAR有效的范围多普勒定位方法,但它对聚光灯和滑动聚光灯SAR无效。考虑到成像过程模型[4],节时空映射关系和空频映射关系,我们修改了位置方程以改善聚光灯和滑动聚光灯SAR的几何校正。仿真结果显示了算法的有效性。

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