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Using ENVISAT ASAR Global Mode Data for Surface Soil Moisture Retrieval Over Oklahoma, USA

机译:使用ENVISAT ASAR全局模式数据进行美国俄克拉荷马州地表土壤水分的反演

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The advanced synthetic aperture radar (ASAR) onboard of the satellite ENVISAT can be operated in global monitoring (GM) mode. ASAR GM mode has delivered the first global multiyear C-band backscatter data set in HH polarization at a spatial resolution of 1 km. This paper investigates if ASAR GM can be used for retrieving soil moisture using a change detection approach over large regions. A method previously developed for the European Remote Sensing (ERS) scatterometer is adapted for use with ASAR GM and tested over Oklahoma, USA. The ASAR-GM-derived relative soil moisture index is compared to 50-km ERS soil moisture data and pointlike in situ measurements from the Oklahoma MESONET. Even though the scale gap from ASAR GM to the in situ measurements is less pronounced than in the case of the ERS scatterometer, the correlation for ASAR against the in situ measurements is, in general, somewhat weaker than for the ERS scatterometer. The analysis suggests that this is mainly due to the much higher noise level of ASAR GM compared to the ERS scatterometer. Therefore, some spatial averaging to 3–10 km is recommended to reduce the noise of the ASAR GM soil moisture images. Nevertheless, the study demonstrates that ASAR GM allows resolving spatial details in the soil moisture patterns not observable in the ERS scatterometer measurements while still retaining the basic capability of the ERS scatterometer to capture temporal trends over large areas.
机译:ENVISAT卫星上的先进合成孔径雷达(ASAR)可以在全球监测(GM)模式下运行。 ASAR GM模式以1 km的空间分辨率提供了首个以HH极化的全球多年C波段反向散射数据集。本文研究了ASAR GM是否可以通过大面积变化检测方法用于土壤水分的获取。先前为欧洲遥感(ERS)散射仪开发的方法适用于ASAR GM,并在美国俄克拉荷马州进行了测试。将ASAR-GM得出的相对土壤湿度指数与50公里ERS土壤湿度数据以及俄克拉荷马MESONET的点状原位测量结果进行了比较。尽管从ASAR GM到现场测量的标度差距不如ERS散射仪明显,但是ASAR与现场测量的相关性通常比ERS散射仪弱。分析表明,这主要是由于与SAR散射仪相比,ASAR GM的噪声水平高得多。因此,建议对3至10 km进行一些空间平均,以减少ASAR GM土壤湿度图像的噪声。尽管如此,研究表明,ASAR GM可以解决ERS散射仪测量中无法观察到的土壤水分模式中的空间细节,同时仍保留ERS散射仪捕获大面积时空趋势的基本能力。

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