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Measuring Azimuth Deformation With L-Band ALOS-2 ScanSAR Interferometry

机译:使用L波段ALOS-2 ScanSAR干涉仪测量方位角变形

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We analyze the methods for measuring azimuth deformation with the L-band Advanced Land Observing Satellite-2 (ALOS-2) scanning synthetic aperture radar (ScanSAR) interferometry. To implement the methods, we extract focused bursts from the ALOS-2 full-aperture product, which is the only product available for ScanSAR interferometry at present. The extracted bursts are properly processed to measure azimuth deformation using interferometric phase. We apply the range split-spectrum method to ScanSAR to estimate the differential ionospheric phase of the interferogram, and take the azimuth derivative of the differential ionospheric phase to mitigate the relative azimuth shift caused by ionosphere. For the first time, azimuth deformation of a large earthquake (April 25, 2015 Nepal earthquake) is nearly completely measured by the L-band ScanSAR interferometry with moderate precision. The result is validated by the azimuth deformation measured by incoherent cross correlation using a pair of high-resolution RADARSAT-2 images. In addition to the final azimuth deformation, we show the possibility of processing full-aperture ScanSAR product using a burst-by-burst approach to form regular interferograms. We also show the recent strong large-scale ionospheric effects on the L-band ALOS-2 ScanSAR interferograms. Other possible applications of this paper include measuring the movement of glaciers.
机译:我们分析了使用L波段高级陆地观测卫星2(ALOS-2)扫描合成孔径雷达(ScanSAR)干涉测量法测量方位角变形的方法。为了实现这些方法,我们从ALOS-2全光圈产品中提取聚焦脉冲,这是目前唯一可用于ScanSAR干涉测量的产品。提取的脉冲串经过适当处理,可以使用干涉相位测量方位角变形。我们将范围分裂谱方法应用于ScanSAR来估计干涉图的差分电离层相位,并采用差分电离层相位的方位角导数来减轻电离层引起的相对方位角偏移。首次通过L波段ScanSAR干涉仪以中等精度几乎完全测量了大地震(2015年4月25日,尼泊尔地震)的方位角变形。通过使用一对高分辨率RADARSAT-2图像通过非相干互相关测量的方位角变形来验证结果。除了最终的方位角变形,我们还展示了使用逐脉冲方法形成规则干涉图来处理全孔径ScanSAR产品的可能性。我们还显示了最近对L波段ALOS-2 ScanSAR干涉图产生的大规模电离层强烈影响。本文的其他可能应用包括测量冰川的运动。

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