首页> 外文期刊>Journal of Applied Remote Sensing >Extraction of digital elevation model from Chinese GF-3 C-band synthetic aperture radar data with a step-wise method focusing on facilitating phase unwrapping
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Extraction of digital elevation model from Chinese GF-3 C-band synthetic aperture radar data with a step-wise method focusing on facilitating phase unwrapping

机译:提取中国GF-3 C波段合成孔径雷达数据的数字高度模型,具有专注于促进相位展开的逐步方法

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摘要

GaoFen-3 (GF-3) is the first fully polarimetric C-band synthetic aperture radar (SAR) satellite in China. Interferometric observation is an important capability of GF-3. However, the long temporal baseline is a great challenge for repeat-pass interferometric synthetic aperture radar (InSAR) processing, especially over mountainous areas. Phase noise and complex topography make phase unwrapping difficult. This paper proposes a step-wise approach for high-resolution InSAR data processing focusing on facilitating phase unwrapping. First, the coarse GF-3 digital elevation model (DEM) is reconstructed by InSAR processing with multilooking of large looks, which is used to suppress phase noise. Second, the coarse GF-3 DEM is used to remove the terrain phase from the InSAR phase with multilooking of small looks, which can reduce phase gradient and improve the accuracy of phase unwrapping. After several iterations, the GF-3 DEM is finally inversed with multilooking of 2 looks, which is of high resolution and high accuracy. The performance of GF-3 C-band InSAR data on the extraction of DEM is examined over a deciduous forested area with the proposed method. The root-mean-square error of the extracted GF-3 DEM is 3.78 m in comparison with the LiDAR DEM. (C) 2018 Society of Photo-Optical Instrumentation Engineers (SPIE).
机译:高芬-3(GF-3)是中国第一个完全偏振的C波段合成孔径雷达(SAR)卫星。干涉测量观察是GF-3的重要能力。然而,长时间基线是重复通过干涉机合成孔径雷达(特别是在山区)的巨大挑战。相位噪声和复杂的地形使阶段展开困难。本文提出了一种关于促进相位展开的高分辨率insar数据处理的逐步方法。首先,通过具有多孔的大外观的Insar处理来重建粗GF-3数字高度模型(DEM),其用于抑制相位噪声。其次,粗gf-3 dem用于从insar阶段移除地形阶段,具有多孔的小外观,可以减少相位梯度并提高相位展开的准确性。在几次迭代之后,GF-3 DEM最终通过多孔2个外观反转,这具有高分辨率和高精度。通过提出的方法,在落叶树面积上检查GF-3 C波段insar数据的性能。与LIDAR DEM相比,提取的GF-3 DEM的根均方误差为3.78米。 (c)2018年光学仪表工程师(SPIE)。

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