首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Analyzing the spectral dimensionality of outdoor visible and near-infrared illumination functions
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Analyzing the spectral dimensionality of outdoor visible and near-infrared illumination functions

机译:分析室外可见光和近红外照明功能的光谱维数

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The spectral properties of outdoor illumination functions can vary significantly, owing to atmospheric conditions and scene geometry. Using a statistical analysis of a comprehensive physical model, we show that the variation in outdoor illumination functions over both the visible range (0.33-0.7 mu m) and the visible/near-infrared range (0.4-2.5 mu m) can be represented accurately by use of seven-dimensional linear models. The physical model includes solar and scattered radiation as well as the effects of atmospheric gases and aerosols. The MODTRAN 3.5 code was employed for computing radiative transfer aspects of the model. We show that the new model has strong agreement over the visible wavelengths with the empirical study of Judd et al. [J. Opt. Sec. Am. 54, 1031 (1964)]. We also demonstrate the accuracy of the model over the 0.4-2.5-mu m spectral range, using measured outdoor illumination functions. (C) 1998 Optical Society of America. [S0740-3232(98)01311-8]. OCIS codes: 010.0010, 150.2950, 280.0280, 330.1690. [References: 32]
机译:由于大气条件和场景几何形状,室外照明功能的光谱特性可能会发生很大变化。通过对综合物理模型的统计分析,我们可以看出室外照明功能在可见范围(0.33-0.7微米)和可见/近红外范围(0.4-2.5微米)上的变化都可以准确表示通过使用七维线性模型。物理模型包括太阳辐射和散射辐射以及大气气体和浮质的影响。 MODTRAN 3.5代码用于计算模型的辐射传递方面。我们证明,新模型与Judd等人的经验研究在可见光波长上具有很强的一致性。 [J.选择。秒上午。 54,1031(1964)]。我们还使用实测室外照明功能证明了该模型在0.4-2.5微米光谱范围内的准确性。 (C)1998年美国眼镜学会。 [S0740-3232(98)01311-8]。 OCIS代码:010.010、150.2950、280.0280、330.1690。 [参考:32]

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