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Determining the irradiance signal from an asymmetric source with directional detectors: application to calibrations of radiometers with diffusers

机译:使用定向探测器确定来自非对称光源的辐照度信号:在带有扩散器的辐射计校准中的应用

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摘要

The energy transfer integral between radiating rectangular and detecting circular parallel plates having nonideal angular characteristics is solved for modeling the distance dependence of the irradiance signal. The equation derived for the irradiance signal, which is called the modified inverse-square law, depends on the position, shape, size, and angular characteristics of the light source and the detector. We apply the new model equation to the calibration of a spectroradiometer to determine accurately the distance offsets, which fix the positions of the effective receiving apertures of diffusers used in the entrance optics of spectroradiometers. Earlier measurement results, e.g., for solar UV irradiance, may include uncorrected effects and can be corrected reliably as diffuser offsets and other correction factors are determined with the modified inverse-square law. Simplifications of the modified inverse-square law for analyzing the distance offsets and the correction factors are studied. Simplified equations for the diffuser offset analysis may be used without losing the accuracy when the cosine response of the diffuser is reasonably good. However, for diffusers whose angular responsivities deviate much from the cosinusoidal angular responsivity, large approximation errors in the diffuser offset values may appear if the angular effects are not properly taken into account.
机译:求解具有非理想角度特性的辐射矩形板与检测圆形平行板之间的能量传递积分,以建立辐照信号的距离依赖性模型。为辐照信号得出的方程式称为修正的平方反比定律,取决于光源和检测器的位置,形状,大小和角度特性。我们将新的模型方程式应用于光谱仪的校准,以准确确定距离偏移量,该距离偏移量固定了光谱仪入口光学系统中使用的扩散器的有效接收孔的位置。较早的测量结果(例如,太阳紫外线辐照度)可能包含未校正的影响,并且可以通过修正的平方反比定律确定漫射器偏移量和其他校正因子,从而可靠地进行校正。研究了用于分析距离偏移量和校正因子的改进的平方反比定律的简化形式。当扩散器的余弦响应相当好时,可以使用扩散器偏移分析的简化公式而不会损失精度。但是,对于角响应度与余弦曲线角响应度相差很大的扩散器,如果没有适当考虑角度效应,则可能会在扩散器偏移值中出现较大的近似误差。

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