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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing >A PolinSAR Inversion Error Model on Polarimetric System Parameters for Forest Height Mapping
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A PolinSAR Inversion Error Model on Polarimetric System Parameters for Forest Height Mapping

机译:森林高度图极化系统参数的PolinSAR反演误差模型

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Polarimetric synthetic aperture radar (SAR) data are inevitably contaminated by polarization crosstalk and channel imbalance, which propagate to the error of final remote sensing product. To ensure the successful estimation of forest heights from forthcoming polarimetric SAR interferometry (PolinSAR) campaigns, a critical study on the polarimetric system requirements of PolinSAR for forest height mapping must be carried out. This paper establishes an analytical model for forest height estimation error including dependences on polarimetric system parameters including crosstalk, channel imbalance, and system noise. Simulation analyses are conducted on the real airborne SAR data acquired by the E-SAR system to validate the proposed theoretical error dependence model. We demonstrate that the established error model can be used not only by the system designers as a guidance for setting the polarimetric system requirements of PolinSAR for forest height mapping, but also by the data analyst to correct for systematic bias in the forest height inversion.
机译:极化合成孔径雷达(SAR)数据不可避免地受到极化串扰和信道不平衡的污染,这些噪声会传播到最终遥感产品的误差中。为了确保通过即将来临的极化SAR干涉测量法(PolinSAR)运动成功估计森林高度,必须对PolinSAR的极化系统对森林高度图的要求进行严格的研究。本文建立了森林高度估计误差的分析模型,该模型包括对极化系统参数(包括串扰,通道不平衡和系统噪声)的依赖性。对E-SAR系统获取的实际机载SAR数据进行了仿真分析,以验证所提出的理论误差相关性模型。我们证明,建立的误差模型不仅可以被系统设计人员用作设置PolinSAR极化系统对森林高度图的要求的指导,而且还可以被数据分析人员用来校正森林高度反演中的系统偏差。

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