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首页> 外文期刊>Selected Topics in Applied Earth Observations and Remote Sensing, IEEE Journal of >Relating P-Band SAR Intensity to Biomass for Tropical Dense Forests in Hilly Terrain: $gamma^0$ or $t^0$?
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Relating P-Band SAR Intensity to Biomass for Tropical Dense Forests in Hilly Terrain: $gamma^0$ or $t^0$?

机译:丘陵地带热带密集森林的P波段SAR强度与生物量的关系: $ gamma ^ 0 $ 或< inline-formula> $ t ^ 0 $

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摘要

Forest biomass retrieval using P-band synthetic aperture radar (SAR) data has been studied during the past two decades. However, much progress remains necessary to recover biomass for tropical dense forests, where above-ground biomass (AGB) values are often found between 250 and 400 t/ha. In this high range, the sensitivity of radar backscatter to AGB is small and can be obscured by disturbing effects. These are related to measurement errors, forest characteristics, and environment variations, but the most important is the underlying topography. In this work, we develop a new backscatter coefficient called in order to minimize topography effects, based on 1) the medium nonreflection symmetry related to azimuth slopes and 2) the change in backscatter angular variation coming with the change in scattering mechanisms due to slopes. The method is tested on TropiSAR campaign data acquired over tropical forest plots in French Guiana. Using power laws between AGB and the backscattering coefficients, results based on the correlation analysis demonstrate the relevance of the proposed method.
机译:在过去的二十年中,已经研究了使用P波段合成孔径雷达(SAR)数据进行森林生物量检索。但是,要恢复热带茂密森林的生物量,仍然需要取得很大进展,因为那里的地上生物量(AGB)值通常在250至400吨/公顷之间。在这种高范围内,雷达后向散射对AGB的灵敏度很小,并且会被干扰效应所掩盖。这些与测量误差,森林特征和环境变化有关,但最重要的是基础地形。在这项工作中,我们基于1)与方位角斜率相关的介质非反射对称性和2)由于斜率引起的散射机制的变化而产生了新的反向散射系数,以最大程度地减小形貌影响。该方法已在从法属圭亚那的热带森林地块获取的TropiSAR运动数据上进行了测试。利用AGB和反向散射系数之间的幂定律,基于相关分析的结果证明了该方法的相关性。

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