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The Application of ALOS/PALSAR InSAR to Measure Subsurface Penetration Depths in Deserts

机译:ALOS / PALSAR InSAR在测量沙漠地下穿透深度中的应用

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Spaceborne Synthetic Aperture Radar (SAR) interferometry has been utilised to acquire high-resolution Digital Elevation Models (DEMs) with wide coverage, particularly for persistently cloud-covered regions where stereophotogrammetry is hard to apply. Since the discovery of sand buried drainage systems by the Shuttle Imaging Radar-A (SIR-A) L-band mission in 1982, radar images have been exploited to map subsurface features beneath a sandy cover of extremely low loss and low bulk humidity in some hyper-arid regions such as from the Japanese Earth Resources Satellite 1 (JERS-1) and Advanced Land Observing Satellite/Phased Array type L-band Synthetic Aperture Radar (ALOS/PALSAR). Therefore, we hypothesise that a Digital Elevation Model (DEM) derived by InSAR in hyper-arid regions is likely to represent a subsurface elevation model, especially for lower frequency radar systems, such as the L-band system (1.25 GHz). In this paper, we compare the surface appearance of radar images (L-band and C-band) with that of optical images to demonstrate their different abilities to show subsurface features. Moreover, we present an application of L-band InSAR to measure penetration depths in the eastern Sahara Desert. We demonstrate how the retrieved L-band InSAR DEM appears to be of a consistently 1–2 m lower elevation than the C-band Shuttle Radar Topography Mission (SRTM) DEM over sandy covered areas, which indicates the occurrence of penetration and confirms previous studies.
机译:星载合成孔径雷达(SAR)干涉测量法已被用于获取具有广泛覆盖范围的高分辨率数字高程模型(DEM),尤其是对于难以应用立体摄影测量法的持续云雾覆盖的地区。自1982年Shuttle Imaging Radar-A(SIR-A)L波段任务发现沙子掩埋的排水系统以来,已经利用雷达图像绘制了一些沙土覆盖下的地下特征,这些沙土在某些情况下损耗极低且体积湿度极低高干旱地区,例如日本地球资源卫星1(JERS-1)和高级陆地观测卫星/相控阵型L波段合成孔径雷达(ALOS / PALSAR)。因此,我们假设InSAR在超干旱区域中推导出的数字高程模型(DEM)可能代表了地下高程模型,尤其是对于低频雷达系统,例如L波段系统(1.25 GHz)。在本文中,我们将雷达图像(L波段和C波段)的表面外观与光学图像的表面外观进行了比较,以展示其显示地下特征的不同能力。此外,我们提出了L波段InSAR在测量东部撒哈拉沙漠穿透深度方面的应用。我们演示了如何在沙质覆盖区域上检索到的L波段InSAR DEM似乎比C波段航天飞机雷达地形任务(SRTM)DEM一致地低1-2 m,这表明发生了穿透并证实了先前的研究。

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