首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >New approaches in multi-angular proximal sensing of vegetation: Accounting for spatial heterogeneity and diffuse radiation in directional reflectance distribution models
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New approaches in multi-angular proximal sensing of vegetation: Accounting for spatial heterogeneity and diffuse radiation in directional reflectance distribution models

机译:植被多角度近距离感测的新方法:在方向反射率分布模型中考虑空间异质性和散射辐射

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The development of tower-mounted automated multi-angular hyperspectral systems has brought new opportunities and challenges for the characterization of the Bidirectional Reflectance Distribution Function (BRDF) on a continuous basis. This study describes the deployment of one of these systems in a Mediterranean savanna ecosystem (AMSPEC-MED), and proposes new approaches for modeling of directional effects. In this study, a Hemispherical-Directional Reflectance Distribution Function (HDRDF) was introduced in order to quantify the effect of diffuse radiation on the estimation of BRDF. The HDRDFs of the two covers of the ecosystem- trees and grasses were un-mixed using a 3-Dimensional (3-D) model of the observed scene. Up-scaling HDRDF estimates to MODIS BRDF product (r(2) is an element of [0.74, 0.86]) and down-scaling to hand held spectral measurements (r(2) = 0.88) achieved a reasonable accuracy (RMSE is an element of [1.81, 3.14]). Despite the uncertainties in the estimation of diffuse irradiance and the 3-D representation of the scene, HDRDF un-mixing demonstrates the potential of automated multi-angular proximal sensing to study vegetation properties in heterogeneous ecosystems and the correction of directional effects of different sources. (C) 2016 Elsevier Inc. All rights reserved.
机译:塔顶安装式自动多角度高光谱系统的发展为连续表征双向反射分布函数(BRDF)带来了新的机遇和挑战。这项研究描述了这些系统之一在地中海稀树草原生态系统(AMSPEC-MED)中的部署,并提出了定向效应建模的新方法。在这项研究中,引入了半球向反射分布函数(HDRDF),以量化漫射辐射对BRDF估计的影响。使用观察到的场景的3维(3-D)模型将生态系统的两棵树和草的HDRDF取消混合。将HDRDF估算值按比例放大到MODIS BRDF乘积(r(2)是[0.74,0.86]的元素),按比例缩小到手持式频谱测量值(r(2)= 0.88)达到了合理的精度(RMSE是一个元素[1.81,3.14]。尽管在估计弥散辐照度和场景的3D表示方面存在不确定性,HDRDF分解显示了自动多角度近距离传感技术在研究异构生态系统中的植被特性以及纠正不同来源的方向效应方面的潜力。 (C)2016 Elsevier Inc.保留所有权利。

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