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Calculation and simulation of atmospheric refraction effects in maritime environments

机译:海洋环境中大气折射效应的计算与仿真

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Near the sea surface, atmospheric refracton and turbulence affect both IR transmission and image quality. This produces an impact on both the detection and classification/identification of targets. With the financial participation of the U.S. Office of Naval Research (ONR), Canada's Defence Research Establishment Valucartier (DREV) is developing PRIME (Propagation Resources In the Maritime Environment), a computer model aimed at describing the overall atmospheric effects on IR imagery systems in the marine surface layer. PRIME can be used as a complement to MODTRAN to compute the effective transmittance in the marine surface layer, taking into account the lens effect caused by refraction. It also provides information on image degradation caused by both refraction and turbulence. This paper reviews the refraction phenomena that take place in the surface layer and discusses their effects on target detection and identification. We then show how PRIME can benefit detection studies and image degradation simulations.
机译:靠近海面,大气折射和湍流影响红外线传输和图像质量。这对目标的检测和分类/识别产生了影响。随着美国海军研究办公室的金融参与(ONR),加拿大的国防研究建立Valucartier(DEREV)正在开发素数(海上环境中的传播资源),这是一种用于描述IR Imagery Systems的整体大气影响的计算机模型海洋表面层。 Prime可以用作Modtran的补充,以计算海上表面层中的有效透射率,考虑到由折射引起的镜片效应。它还提供有关折射和湍流引起的图像劣化的信息。本文评论了在表面层中发生的折射现象,并讨论了它们对目标检测和识别的影响。然后,我们展示了Prime如何有利于检测研究和图像劣化模拟。

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