SAR imagery applied to the monitoring of hyper-saline deposits: Death Valley example (CA)

Y. Lasne, P. Paillou, A. Freeman, B. Chapman
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Abstract

The present study aims at understanding the influence of salinity on the dielectric constant of soils and then on the backscattering coefficients recorded by airborne / spaceborne SAR systems. Based on dielectric measurements performed over hyper-saline deposits in Death Valley (CA), as well as laboratory electromagnetic characterization of salts and water mixtures, we used the dielectric constants as input parameters of analytical IEM simulations to model both the amplitude and phase behaviors of SAR signal at C, and L-bands. Our analytical simulations allow to reproduce specific copolar signatures recorded in SAR data, corresponding to the Cottonball Basin saltpan. We also propose the copolar backscattering ratio and phase difference as indicators of moistened and salt-affected soils. More precisely, we show that these copolar indicators should allow to monitor the seasonal variations of the dielectric properties of saline deposits.
应用SAR图像监测高盐沉积物:死亡谷例(CA)
本研究旨在了解盐度对土壤介电常数的影响,进而对机载/星载SAR系统记录的后向散射系数的影响。基于在死亡谷(CA)的高盐沉积上进行的介电测量,以及盐和水混合物的实验室电磁特性,我们使用介电常数作为解析IEM模拟的输入参数来模拟SAR信号在C和l波段的振幅和相位行为。我们的分析模拟允许再现SAR数据中记录的特定共极性特征,对应于棉球盆地盐田。我们还提出了共极性后向散射比和相位差作为湿润和盐影响土壤的指标。更准确地说,我们表明,这些共极性指标应该允许监测的季节变化的介电性质的盐沉积物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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