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首页> 外文期刊>Applied optics >Airborne ultraviolet imaging system for oil slick surveillance: oil-seawater contrast, imaging concept, signal-to-noise ratio, optical design, and optomechanical model
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Airborne ultraviolet imaging system for oil slick surveillance: oil-seawater contrast, imaging concept, signal-to-noise ratio, optical design, and optomechanical model

机译:用于浮油监测的机载紫外线成像系统:油-海水对比,成像概念,信噪比,光学设计和光机械模型

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摘要

The airborne ultraviolet imaging system, which assesses oil slick areas better than visible and infrared optical systems, was designed to monitor and track oil slicks in coastal regions. A model was built to achieve the upwelling radiance distribution of oil-covered sea and clean seawater, based on the radiance transfer software. With this model, the oil-seawater contrast, which affects the detection of oil-covered coastal areas, was obtained. The oil seawater contrast, fundamental imaging concept, analog calculation of SNR, optical design, and optomechanical configuration of the airborne ultraviolet imaging system are illustrated in this paper. The study of an airborne ultraviolet imaging system with F-number 3.4 and a 40 degrees field of view (FOV) in near ultraviolet channel (0.32-0.38 mu m) was illustrated and better imaging quality was achieved. The ground sample distance (GSD) is from 0.35 to 0.7 m with flight height ranges from 0.5 to 1 km. Comparisons of detailed characteristics of the airborne ultraviolet imaging system with the corresponding characteristics of previous ultraviolet systems were tabulated, and these comparisons showed that this system can achieve a wide FOV and a relative high SNR. A virtual mechanical prototype and tolerances analysis are illustrated in this paper to verify the performance of fabrication and assembly of the ultraviolet system. (C) 2015 Optical Society of America
机译:机载紫外线成像系统可以比可见光和红外光学系统更好地评估浮油区域,旨在监视和跟踪沿海地区的浮油。基于辐射转移软件,建立了一个模型来实现含油海域和干净海水上升流的辐射分布。利用该模型,获得了油-海水对比,该对比影响了对被油覆盖的沿海地区的检测。本文阐述了机油紫外线对比度,基本成像概念,信噪比的模拟计算,光学设计以及机载紫外线成像系统的光机械配置。阐述了在近紫外线通道(0.32-0.38微米)中具有F值3.4和40度视场(FOV)的机载紫外线成像系统的研究,并获得了更好的成像质量。地面样本距离(GSD)为0.35至0.7 m,飞行高度范围为0.5至1 km。列出了机载紫外线成像系统的详细特征与以前的紫外线系统的相应特征的比较,这些比较表明该系统可以实现宽视场和相对较高的信噪比。本文演示了虚拟机械原型和公差分析,以验证紫外线系统的制造和组装性能。 (C)2015年美国眼镜学会

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