首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Looking into the water with oblique head tilting: revision of the aerial binocular imaging of underwater objects
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Looking into the water with oblique head tilting: revision of the aerial binocular imaging of underwater objects

机译:用倾斜的头部倾斜入水:水下物体的空中双目成像的修订

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It is a well-known phenomenon that when we look into the water with two aerial eyes, both the apparent position and the apparent shape of underwater objects are different from the real ones because of refraction at the water surface. Earlier studies of the refraction-distorted structure of the underwater binocular visual field of aerial observers were restricted to either vertically or horizontally oriented eyes. We investigate a generalized version of this problem: We calculate the position of the binocular image point of an underwater object point viewed by two arbitrarily positioned aerial eyes, including oblique orientations of the eyes relative to the flat water surface. Assuming that binocular image fusion is performed by appropriate vergent eye movements to bring the object's image onto the foveas, the structure of the underwater binocular visual field is computed and visualized in different ways as a function of the relative positions of the eyes. We show that a revision of certain earlier treatments of the aerial imaging of underwater objects is necessary. We analyze and correct some widespread erroneous or incomplete representations of this classical geometric optical problem that occur in different textbooks. Improving the theory of aerial binocular imaging of underwater objects, we demonstrate that the structure of the underwater binocular visual field of aerial observers distorted by refraction is more complex than has been thought previously.
机译:一个众所周知的现象是,当我们用两只空中眼睛注视水中时,由于水面的折射,水下物体的视在位置和视在形状与真实物体不同。空中观察者的水下双目视野的折射变形结构的早期研究仅限于垂直或水平方向的眼睛。我们研究此问题的一个广义形式:我们计算由两个任意放置的空中眼睛(包括眼睛相对于平坦水面的倾斜方向)观察到的水下物体点的双目图像点的位置。假设通过适当的剧烈眼睛移动将双眼图像融合以将对象的图像置于中央凹上,则根据眼睛的相对位置,以不同的方式计算和可视化水下双眼视野的结构。我们表明,对水下物体的空中成像进行某些早期处理的修订是必要的。我们分析并纠正了发生在不同教科书中的这种经典几何光学问题的一些普遍的错误或不完整表示形式。改进水下物体的空中双目成像理论,我们证明了被折射扭曲的空中观察者的水下双目视野的结构比以前想象的要复杂。

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