Color Compensation of an Underwater Imaging System Using Electromagnetic Wave Propagation

Kotaro Inoue, Min-Chul Lee, Cheol-Su Kim, M. Cho
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引用次数: 1

Abstract

Images can be obtained by collecting rays from objects. The characteristics of electromagnetic wave propagation depend on the medium. In particular, in an underwater imaging system, the interface between air and water must be considered. Further, reflection and transmission coefficients can be found by using electromagnetic theory. Because of the fact that the values of these coefficients differ according to the media, the recorded light intensities will change. A color image sensor has three different color channels. Therefore, the reflection and transmission coefficients have to be calculated individually. Thereafter, by using these coefficients, we can compensate for the color information of underwater objects. In this paper, we present a method to compensate for the color information of underwater objects by using electromagnetic wave propagation theory. To prove our method, we conducted optical experiments and evaluated the quality of the compensated image by a metric known as mean square error.
基于电磁波传播的水下成像系统色彩补偿
通过收集来自物体的光线可以获得图像。电磁波的传播特性取决于介质。特别是在水下成像系统中,必须考虑空气和水之间的界面。此外,利用电磁理论可以求出反射系数和透射系数。由于这些系数的值根据介质的不同而不同,因此记录的光强将发生变化。彩色图像传感器有三个不同的颜色通道。因此,必须分别计算反射系数和透射系数。然后,利用这些系数对水下物体的颜色信息进行补偿。本文提出了一种利用电磁波传播理论对水下物体的颜色信息进行补偿的方法。为了证明我们的方法,我们进行了光学实验,并通过称为均方误差的度量来评估补偿图像的质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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