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面向森林高度提取的光学多角度立体观测影像模拟
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作者 姚远 倪文俭 张志玉 《遥感学报》 EI CSCD 北大核心 2023年第4期1034-1044,共11页
森林冠层高度是森林生态系统植被碳储量的重要指示因子之一。已有研究表明光学多角度立体观测(即摄影测量)数据具备森林冠层高度提取的潜力,然而光学影像容易受到云、雨等天气因素的影响,区域高精度森林冠层高度制图必需依靠多星多时相... 森林冠层高度是森林生态系统植被碳储量的重要指示因子之一。已有研究表明光学多角度立体观测(即摄影测量)数据具备森林冠层高度提取的潜力,然而光学影像容易受到云、雨等天气因素的影响,区域高精度森林冠层高度制图必需依靠多星多时相数据融合才能实现。现有星载摄影测量系统获取的影像分辨率和观测角度差异较大,系统研究影像分辨率和观测角度变化对多角度立体观测点云垂直分布的影响规律,是实现多星多时相数据融合的前提。森林光学多角度立体观测模型是开展该研究的有效理论工具,但现有“森林光学多角度立体观测模型(LandStereo)”仅具备沿轨前后视立体观测影像模拟能力,无法用于WorldView等侧视立体观测影像的模拟分析。因此,本文对LandStereo模型进行了改进,使模型具备林区任意指定观测角度的影像模拟能力,进而利用改进后的模型对正视、正侧视和斜侧视等典型观测角度影像进行了模拟,并对不同观测角度组合构成的立体像对森林高度的提取精度进行了分析。结果表明,改进后的模型能够用于刻画森林冠层多角度立体特征,观测角度的变化是利用立体像对提取森林冠层高度精度的重要影响因素。本文为系统研究林区任意角度组合的多角度立体观测点云随影像分辨率和观测角度的变化规律提供了理论工具。 展开更多
关键词 森林高度 多角度 立体观测 影像模拟 LandStereo POV-RAY 植被光学模型
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A unified canopy bidirectional reflectance (BRDF) model for row ceops 被引量:3
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作者 YAN BinYan XU XiRu FAN WenJie 《Science China Earth Sciences》 SCIE EI CAS 2012年第5期824-836,共13页
Row sowing is a basic crop sowing method in China,and thus an accurate Bidirectional Reflectance Distribution Function (BRDF) model of row crops is the foundation for describing the canopy bidirectional reflectance ch... Row sowing is a basic crop sowing method in China,and thus an accurate Bidirectional Reflectance Distribution Function (BRDF) model of row crops is the foundation for describing the canopy bidirectional reflectance characteristics and estimating crop ecological parameters.Because of the macroscopically geometric difference,the row crop is usually regarded as a transition between continuous and discrete vegetation in previous studies.Were row treated as the unit for calculating the four components in the Geometric Optical model (GO model),the formula would be too complex and difficult to retrieve.This study focuses on the microscopic structure of row crops.Regarding the row crop as a result of leaves clumped at canopy scale,we apply clumping index to link continuous vegetation and row crops.Meanwhile,the formula of clumping index is deduced theoretically.Then taking leaf as the basic unit,we calculate the four components of the GO model and develop a BRDF model for continuous vegetation,which is gradually extended to the unified BRDF model for row crops.It is of great importance to introduce clumping index into BRDF model.In order to evaluate the performance of the unified BRDF model,the canopy BRDF data collected in field experiment,"Watershed Allied Telemetry Experiment Research (WATER)",from May 30th to July 1st,2008 are used as the validation dataset for the simulated values.The results show that the unified model proposed in this paper is able to accurately describe the non-isotropic characteristics of canopy reflectance for row crops.In addition,the model is simple and easy to retrieve.In general,there is no irreconcilable conflict between continuous and discrete vegetation,so understanding their common and individual characteristics is advantageous for simulating canopy BRDF.It is proven that the four components of the GO model is the basic motivational factor for bidirectional reflectance of all vegetation types. 展开更多
关键词 row crop BRDF CLUMPING clumping index
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