首页> 外文期刊>IEEE Geoscience and Remote Sensing Letters >A Heuristic Approach to Reduce Atmospheric Effects in InSAR Data for the Derivation of Digital Terrain Models or for the Characterization of Forest Vertical Structure
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A Heuristic Approach to Reduce Atmospheric Effects in InSAR Data for the Derivation of Digital Terrain Models or for the Characterization of Forest Vertical Structure

机译:减少InSAR数据中大气效应的启发式方法,用于数字地形模型的推导或森林垂直结构的表征

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The differences of two digital terrain models (DTMs) derived from airborne interferometric synthetic aperture radar (InSAR) data of short and long wavelengths are utilized for the estimation of vertical forest structures. However, when the spaceborne repeat-pass InSAR data are used, atmospheric effects must be considered. A simple method for the reduction of atmospheric effects in spaceborne repeat-pass interferometry is proposed in this letter. By subtracting a simulated interferogram using the Shuttle Radar Topography Mission (SRTM) DTM from the interferogram of a pair of Phased Array Type L-Band Synthetic Aperture Radar (PALSAR) InSAR data, the remaining phase includes the phase caused by the height differences of scattering phase centers (SPC) at C- and L-bands and the phases caused by atmospheric effects and other changes during the PALSAR repeat-pass period. A low-pass spatial filtering can reveal the atmospheric effect in the phase image because of the low spatial frequency of the atmospheric effects. The proper size of the filtering window can be determined by the changes of standard deviation of filtered phase images as the window size increases. The changes of the standard deviations of the filtered phase images should be almost constant when only the atmospheric effect remains. After reducing the atmospheric effects, the difference between the SRTM-DTM and the PALSAR-DTM was reduced from $60.17~{rm m}pm 16.2~{rm m}$ to near 0 m $(0.52~{rm m}pm 4.3~{rm m})$ at bare surfaces, and the correlation $(R^{2})$ between the mean forest height and the difference between the SRTM-DTM and the PALSAR-DTM was significantly increased from 0.021 to 0.608.
机译:从短波和长波的机载干涉合成孔径雷达(InSAR)数据得出的两个数字地形模型(DTM)的差异可用于估算垂直森林结构。但是,使用星载重复通过InSAR数据时,必须考虑大气影响。在这封信中,提出了一种减少星载重复通过干涉法中的大气影响的简单方法。通过使用航天飞机雷达地形任务(SRTM)DTM从一对相控阵L波段合成孔径雷达(PALSAR)InSAR数据的干涉图中减去模拟干涉图,剩余相位包括由散射高度差引起的相位C和L波段的相位中心(SPC),以及PALSAR重复通过期间由大气效应和其他变化引起的相位。由于大气效应的空间频率较低,因此低通空间滤波可以在相位图像中显示大气效应。过滤窗口的适当大小可以通过随着窗口大小增加而过滤的相位图像的标准偏差的变化来确定。当仅保留大气效应时,滤波后的相位图像的标准偏差的变化应几乎恒定。减少大气影响后,SRTM-DTM和PALSAR-DTM之间的差额从60.17美元〜{rm m} pm 16.2〜{rm m} $减少到接近0 m $(0.52〜{rm m} pm 4.3〜 {rm m})$在裸露的表面,平均森林高度与SRTM-DTM和PALSAR-DTM之间的差异之间的相关性$(R ^ {2})$从0.021显着增加到0.608。

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