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Using a multikernel least-variance approach to retrieve and evaluate albedo from limited bidirectional measurements

机译:使用多核最小方差方法从有限的双向测量中检索和评估反照率

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摘要

When a multikernel modelling approach is being applied to remotely sensed data, a new criteria - least variance of white-sky albedo selects semiempirical bidirectional reflectance distribution function (BRDF) kernel combinations better than the more conventional least-squares fitting criteria. The BRDF describes the scattering of light from surface as a function of illumination and view geometry. Semiempirical kernels are nonlinear geometric functions derived from a simplification of physical models of scattering. These are combined linearly to fit observed bidirectional reflectance measurements. White-sky albedo (bihemispherical reflectance) is the integral of directional reflectance for all viewing and illumination directions and is a true surface property. The variance of retrieved white-sky albedo is a function of the noises of measurement, the specific viewing and illumination geometry of the surface scattering measurements, and the number of observations used in the inversion. By selecting the kernel combination that provides the least variance of white-sky albedo, our studies show that a more stable estimate of white-sky and black-sky (directional-hemispherical) albedo is produced. (C) 2001 Elsevier Science Inc. All lights reserved. [References: 17]
机译:当将多核建模方法应用于遥感数据时,新标准-白天空反照率最小方差比更传统的最小二乘拟合标准更好地选择了半经验双向反射率分布函数(BRDF)内核组合。 BRDF描述了来自表面的光散射与照明和视图几何形状的关系。半经验核是从简化物理散射模型派生而来的非线性几何函数。将它们线性组合以适合观察到的双向反射率测量。白天空反照率(双半球反射率)是所有观察和照明方向的定向反射率的积分,并且是真实的表面特性。所获取的白色天空反照率的方差是测量噪声,表面散射测量的特定观察和照明几何以及反演中使用的观测次数的函数。通过选择提供白色天空反照率变化最小的核组合,我们的研究表明,可以更稳定地估计白色天空和黑色天空(定向半球)反照率。 (C)2001 Elsevier Science Inc.版权所有。 [参考:17]

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