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ScanSAR Interferometry of the Gaofen-3 Satellite with Unsynchronized Repeat-Pass Images

机译:具有非同步重复通过图像的高分3号卫星的ScanSAR干涉测量

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摘要

Gaofen-3 is a Chinese remote sensing satellite with multiple working modes, among which the scanning synthetic aperture radar (ScanSAR) mode is used for wide-swath imaging. synthetic aperture radar (SAR) interferometry in the ScanSAR mode provides the most rapid way to obtain a global digital elevation model (DEM), which can also be realized by Gaofen-3. Gaofen-3 ScanSAR interferometry works in the repeat-pass mode, and image pair non-synchronizations can influence its performance. Non-synchronizations can include differences of burst central times, satellite velocities, and burst durations. Therefore, it is necessary to analyze their influences and improve the interferometric coherence. Meanwhile, interferometric phase compensation and rapid DEM geolocation also need to be considered in interferometric processing. In this paper, interferometric coherence was analyzed in detail, followed by an iterative filtering method, which helped to improve the interferometric performance. Further, a phase compensation method for Gaofen-3 was proposed to compensate for the phase error caused by the unsynchronized azimuth time offset of image pair, and a closed-form solution of DEM geolocation with ground control point (GCP) information was derived. Application of our methods to a pair of Gaofen-3 interferometric images showed that these methods were able to process the images with good accuracy and efficiency. Notably, these analysis and processing methods can also be applied to other SAR satellites in the ScanSAR mode to obtain DEMs with high quality.
机译:高分3号卫星是一种具有多种工作模式的中国遥感卫星,其中扫描合成孔径雷达(ScanSAR)模式用于宽幅成像。 ScanSAR模式下的合成孔径雷达(SAR)干涉测量法是获得全球数字高程模型(DEM)的最快速方法,高芬3号也可以实现。 Gaofen-3 ScanSAR干涉仪工作在重复通过模式下,图像对的不同步会影响其性能。非同步可能包括突发中心时间,卫星速度和突发持续时间的差异。因此,有必要分析其影响并改善干涉相干性。同时,在干涉处理中还需要考虑干涉相位补偿和快速DEM定位。本文详细分析了干涉测量的相干性,然后介绍了一种迭代滤波方法,该方法有助于提高干涉测量性能。此外,提出了一种高芬3号的相位补偿方法,以补偿由图像对的不同步方位角时间偏移引起的相位误差,并推导了具有地面控制点(GCP)信息的DEM地理定位的闭式解。将我们的方法应用于一对高分3干涉图像,表明这些方法能够对图像进行高精度和高效的处理。值得注意的是,这些分析和处理方法还可以以ScanSAR模式应用于其他SAR卫星,以获得高质量的DEM。

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