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Underwater light field modeling at the horizontal line of optical axis’ tangent plane

机译:光轴水平线水平线的水下光场建模

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When a light source is applied for underwater illumination, the beam angle of the light source will change because of the attenuation effect of water. The light intensity of the light source is mainly concentrated in the area surrounded by the beam angle. In this area, target objects can obtain brighter illumination, which is conducive to underwater optical imaging. Therefore, it is meaningful to study the distribution of the light field of an underwater light source. To study the spatial distribution of the light field, its distribution in one dimension is studied first. In this research, a pool experiment was implemented, and a Gauss light field distribution model at the horizontal line in the optical axis's tangent plane of two light sources is established. The results show that the model has applicability for the light field, with a goodness of fit of 99.62% and 99.99% and fitting errors of 9.87% and 1.09%, respectively, which lays the groundwork for the subsequent study of the spatial distribution of light fields. Then, according to the International Commission on Illumination, the beam angles are 15.9° and 14.4°, respectively.
机译:当光源施加到水下照明时,由于水的衰减效果,光源的光束角将变化。光源的光强度主要集中在由光束角围绕的区域中。在该领域,目标物体可以获得更亮的照明,这有利于水下光学成像。因此,研究水下光源的光场的分布是有意义的。为了研究光场的空间分布,首先研究了一个维度的分布。在该研究中,实施了池实验,并且建立了两个光源的光轴切线平面中水平线的高斯轻场分布模型。结果表明,该模型对光田具有适用性,良好的适合度为99.62%,99.99%,分别为99.9%和1.09%的效率分别为后续研究光的空间分布的基础字段。然后,根据国际照明委员会,梁角分别为15.9°和14.4°。

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