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OPTICAL REMOTE SENSING OF VEGETATION - MODELING, CAVEATS, AND ALGORITHMS

机译:植被的光学遥感-建模,洞穴和算法

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The state-of-the-art on radiative transfer modeling in vegetation canopies and the application of such models to the interpretation and analysis of remotely sensed optical data is summarized. Modeling of top-of-the-atmosphere and top-of-the-canopy radiance field is developed as boundary value problems in radiative transfer. The parameterization of the constituent functions with simple models and/or empirical data is outlined together with numerical solution methods and examples of results of model validation. Caveats in the assignment of signal characteristics to surface properties are itemized and discussed with example results. Algorithms to estimate surface properties from remote observations are classified as spectral vegetation indices, model inversion, expert systems, neural networks, and genetic algorithms. Their applicability is also discussed. [References: 66]
机译:总结了植被冠层辐射传输建模的最新技术及其在遥感光学数据的解释和分析中的应用。作为辐射传递中的边值问题,开发了大气顶和冠层辐射场的建模。概述了具有简单模型和/或经验数据的组成函数的参数化以及数值解法和模型验证结果的示例。将信号特性分配给表面特性的注意事项逐项列出,并与示例结果进行讨论。从远程观测估计表面性质的算法分为光谱植被指数,模型反演,专家系统,神经网络和遗传算法。还讨论了它们的适用性。 [参考:66]

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