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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >A field experiment on microwave forest radiometry: L-band signal behaviour for varying conditions of surface wetness
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A field experiment on microwave forest radiometry: L-band signal behaviour for varying conditions of surface wetness

机译:微波森林辐射测量的野外实验:不同表面湿度条件下的L波段信号行为

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From July-December 2004 the experimental campaign 'Bray 2004' was conducted in the coniferous forest of Les Landes near Bordeaux, France, using a multi-angle L-band (1.4 GHz) radiometer to measure from above the forest at horizontal polarization. At the same time, ground measurements were taken of soil and litter moisture content, while precipitation was also permanently monitored, This experiment was done in the context of the upcoming SMOS mission in order to improve our understanding of the behaviour of the L-band signal from forested areas for different wetness conditions and viewing angles. This is especially relevant for solving the problem of heterogeneity since a large fraction of SMOS pixels (~ 30 × 30 km{sup}2) is partially covered by forest. This paper describes the objectives and the overall set-up of the Bray-2004 experiment and shows some first results. The greater part of the horizontally polarized L-band signal is found to be dominated by the influence of physical temperature. Variations in soil and/or litter moisture content are visible in the angular signal and in the above-canopy microwave emission, although the dynamic range of this last effect is very small. This, together with the fact that emissivity values are very high, is possibly due to the presence of a substantial litter layer. However, decoupling of soil and litter effects is difficult because of the strong correlation found between soil and litter moisture.
机译:从2004年7月至12月,实验活动“布雷2004”在法国波尔多附近的莱斯兰德斯针叶林中进行,使用多角度L波段(1.4 GHz)辐射计从森林上方以水平极化方向进行测量。同时,对土壤和凋落物的水分含量进行了地面测量,同时还对降水进行了永久性监测。此实验是在即将到来的SMOS任务中进行的,目的是增进我们对L波段信号行为的了解来自森林地区的不同湿度条件和视角。这对于解决异质性问题特别重要,因为大部分SMOS像素(〜30×30 km {sup} 2)被森林部分覆盖。本文介绍了Bray-2004实验的目标和总体设置,并显示了一些初步结果。发现大部分水平极化的L波段信号受物理温度的影响。尽管最后一个效应的动态范围很小,但在角度信号和上面的冠层微波发射中可见土壤和/或垫料水分含量的变化。这以及发射率值非常高的事实,可能是由于存在大量的垃圾层。但是,由于土壤和垫料水分之间存在很强的相关性,因此很难将土壤和垫料效应脱钩。

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