第二章进行了大气辐射传输模型的模拟与分析。
The second chapter will introduce the simulation and analysis of atmospheric radiation transferring model.
辐射传输模型;
利用卫星遥感数据解译地表特性需要应用辐射传输模型与反演。
The interpretation of satellite remote sensing data in terms of land surface properties requires the use of radiation transfer models and inversion procedures.
建立了一种基于植被冠层辐射传输模型SAILH 的参数化模型。
The paper proposes a parameterized model based on the vegetation canopy radiative transfer model SAILH.
本文总结了三类大气校正技术方法,大气辐射传输模型是理论上处理精度最高的方法。
This paper summarizes three methods of atmospheric correction, and atmospheric radiative transfer model is the most accurate method.
针对树木模型提出正向光线跟踪的辐射传输模型,并详细阐述了模型假设、处理流程与主要算法。
A radiation transfer model is proposed for tree model based on forward ray tracing. The model hypothesis, processing flow and primary algorithm are expounded.
目前有很多辐射传输模型可以用来描述地表遥感植被冠层场景,并解释遥感信号在其中的辐射传输特性。
Radiation transfer models can depict land surface remote sensing vegetation canopy scene, interpret the radiation and transfer characteristics of remote sensing signals.
本文主要研究内容包括:1、结合同步气象辅助数据,利用6S辐射传输模型法,对太湖水体影像进行大气校正;
The main contents of this study are as follows:1, Making atmospheric correction with 6S radiative transfer model, combined with synchronous meteorologic records;
第四章根据反演得到的气溶胶光学厚度和大气水汽含量,利用辐射传输模型计算大气校正参数的方法来对遥感图像进行大气校正。
The forth one gives a method to correct the atmospheric effects by taking the AOD and water vapor content inversion results into the atmospheric radiation transferring model.
以辐射传输理论为基础,建立了大气距离选通成像系统后向散射光和信号光的模型。
Based on the radiation transmission theory, a model of optical backscatter and signal of atmosphere range-gated imaging system was given.
以辐射传输理论为基础,建立了大气距离选通成像系统后向散射光和信号光的模型。
Based on the radiation transmission theory, a model of optical backscatter and signal of atmosphere range-gated imaging system is given.
水体的固有光学特性是描述水体辐射传输的基本光学特性,是建立水质参数遥感模型的基础。
The inherent optical properties are the fundamental optical properties describing the radiation transmission in water body, which are mainly influenced by CDOM, tripton and phytoplankton.
并详细论述了建立大气传输模型、场景建模及其红外辐射建模的方法。
The methods to make atmospheric transfer model, scene model and infrared radiation model are discussed.
根据大气的辐射传输方程提出了一种计算速度快、精度高尾焰紫外辐射传输的模型,这种模型的收敛性已得到证明。
Based on radiative transfer equation, a model which has high precision and compute fast has been designed. The convergence of this model has been confirmed.
根据大气的辐射传输方程提出了一种计算速度快、精度高尾焰紫外辐射传输的模型,这种模型的收敛性已得到证明。
Based on radiative transfer equation, a model which has high precision and compute fast has been designed. The convergence of this model has been confirmed.
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