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A THREE-LAYER SCATTERING MODEL OF THE SLOPE FOREST AREA FOR POLARIMETRIC SAR INTERFEROMETRY

机译:Polarimetric SAR干涉测量斜率区域的三层散射模型

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Polarimetric SAR interferometry (PolInSAR) is a promising remote sensing technique for extracting forest height in which the random volume over ground (RVoG) model has been extensively applied to polarimetric interferometry SAR data for the retrieval of forest geophysical parameters. The complex interferometric coherence of the RVoG model was originally derived in a simplified way by neglecting some factors, like the terrain slope and the double bounce interaction with the stems or trunks. But in many cases, none of them should be ignored. Therefore, a slope three-layer scattering (STLS) model is proposed to correct the terrain distortion for forest parameters estimation in a sloping forest area. At the same time, this model separates the vertical structure of forest into three layers: ground, tree-trunk and the canopy layer which account for the simultaneous effects of three scattering components on complex coherence. A significant model complexity reduction is achieved by aligning the reference frame along the local terrain slope and changing the corresponding radar geometrical configuration. The STLS model provides a better understanding of microwave scattering process in the terrain slope area compared to traditional RVoG model.
机译:Polarimetric SAR干涉测量法(PONINER)是用于提取森林高度的有前途的遥感技术,其中在地面(RVOG)模型上的随机容积广泛地应用于森林地球物理参数检索的偏振干涉测量SAR数据。 Rvog模型的复杂干涉间相干性最初通过忽视一些因素而忽略了一种简化的方式,如地形斜坡和与茎或树干的双反射相互作用。但在许多情况下,他们都不应该被忽略。因此,提出了一个斜率三层散射(STL)模型以校正倾斜林区域中的森林参数估计的地形变形。同时,该模型将森林的垂直结构分成三层:地面,树干和遮篷层,其考虑了三个散射成分对复杂相干性的同时效果。通过将参考框架沿着本地地形斜率对准并改变相应的雷达几何构造来实现显着的模型复杂性降低。与传统的Rvog模型相比,STLS模型可以更好地了解地形斜率区域中的微波散射过程。

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