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Design of a Device for Sky Light Polarization Measurements

机译:天光偏振测量装置的设计

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摘要

Sky polarization patterns can be used both as indicators of atmospheric turbidity and as a sun compass for navigation. The objective of this study is to improve the precision of sky light polarization measurements by optimal design of the device used. The central part of the system is composed of a Charge Coupled Device (CCD) camera; a fish-eye lens and a linear polarizer. Algorithms for estimating parameters of the polarized light based on three images are derived and the optimal alignments of the polarizer are analyzed. The least-squares estimation is introduced for sky light polarization pattern measurement. The polarization patterns of sky light are obtained using the designed system and they follow almost the same patterns of the single-scattering Rayleigh model. Deviations of polarization angles between observation and the theory are analyzed. The largest deviations occur near the sun and anti-sun directions. Ninety percent of the deviations are less than 5° and 40% percent of them are less than 1°. The deviations decrease evidently as the degree of polarization increases. It also shows that the polarization pattern of the cloudy sky is almost identical as in the blue sky.
机译:天空偏振模式既可以用作大气浑浊的指标,也可以用作导航的太阳罗盘。这项研究的目的是通过对所用设备的最佳设计来提高天光偏振测量的精度。系统的中央部分由一个电荷耦合器件(CCD)摄像机组成;鱼眼镜头和线性偏光镜。推导了基于三幅图像的偏振光参数估计算法,并分析了偏振器的最优对准。引入最小二乘估计用于天光偏振模式测量。使用设计的系统可以获得天光的偏振模式,并且它们遵循与单散射瑞利模型几乎相同的模式。分析了观测值与理论值之间的偏振角偏差。最大偏差发生在太阳方向和反太阳方向附近。 90%的偏差小于5°,其中40%的偏差小于1°。随着极化程度的增加,偏差明显减小。这也表明,多云天空的偏振模式与蓝天几乎相同。

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