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Image formation with regard to object shadow for objects inside a scattering medium

机译:关于散射介质内部物体的物体阴影的图像形成

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The conventional theory of image transfer through a scattering medium treats objects located upon reflecting surfaces. It is shown that, when an object is located inside a scattering medium and shields a part of space, ignoring the shadowing leads to incorrect results, especially for modern time-gating systems. We develop a general theory of image formation including the shadowing effect when an object is located inside a scattering medium. The example of the observation of a submerged object through a windy ocean surface is chosen to illustrate this theory. A few unexpected effects in imaging of a submerged object are found and discussed, including contrast conversion for a sinking object and higher contrast in the shadow image than in the image of the object itself. The conclusion that using the shadow image for detection of a submerged object can be more efficient than using the image of the object itself is of practical significance.
机译:通过散射介质进行图像传输的传统理论是对位于反射面上的物体进行处理。结果表明,当物体位于散射介质内部并屏蔽一部分空间时,忽略阴影会导致错误的结果,尤其是对于现代时间门控系统。我们开发了图像形成的一般理论,包括当物体位于散射介质内部时的阴影效果。选择通过大风海面观察水下物体的例子来说明这一理论。发现并讨论了淹没物体成像中的一些意想不到的效果,包括沉没物体的对比度转换以及阴影图像中的对比度高于物体本身的图像中的对比度。使用阴影图像检测浸没物体比使用物体本身的图像更有效的结论具有实际意义。

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