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Resolution enhancement in active underwater polarization imaging with modulation transfer function analysis

机译:利用调制传递函数分析提高有源水下偏振成像的分辨率

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摘要

Active polarization imaging technology is a convenient and promising method for imaging in a scattering medium such as fog and turbid water. However, few studies have investigated the influence of polarization on the resolution in underwater imaging. This paper reports on the effects of polarization detection on the resolution of underwater imaging by using active polarization imaging technology. An experimental system is designed to determine the influence under various polarization and water conditions. The modulation transfer function is introduced to estimate the resolution variations at different spatial frequencies. Results show that orthogonal detection supplies the best resolution compared with other polarization directions in the turbid water. The performance of the circular polarization method is better than the linear process. However, if the light propagates under low scattering conditions, such as imaging in clean water or at small optical thickness, the resolution enhancement is not sensitive to the polarization angles. (C) 2015 Optical Society of America
机译:主动偏振成像技术是一种在有雾和浑浊的水等散射介质中成像的便捷且有前途的方法。但是,很少有研究调查偏振对水下成像分辨率的影响。本文报道了使用主动偏振成像技术进行偏振检测对水下成像分辨率的影响。设计了一个实验系统来确定在各种极化和水条件下的影响。引入了调制传递函数以估计不同空间频率下的分辨率变化。结果表明,与浑浊水中的其他极化方向相比,正交检测可提供最佳分辨率。圆极化方法的性能优于线性过程。但是,如果光在低散射条件下传播,例如在清洁水中成像或以较小的光学厚度传播,则分辨率增强对偏振角不敏感。 (C)2015年美国眼镜学会

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