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Compressive line sensing imaging system in a controlled hybrid scattering environment

机译:受控混合散射环境中的压缩线传感成像系统

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摘要

In recent years, the compressive line sensing (CLS) active imaging scheme has been proposed for imaging applications over strong scattering medium. This concept has been demonstrated to be effective in the particle-induced scattering mediums and in the turbulence environment through simulations and test tank experiments. Nevertheless, in many atmospheric and underwater surveillance applications, the degradation of the visual environment may come from both particle scattering (turbidity) and turbulence. We study the CLS imaging system in a hybrid environment consisting of simultaneous particle and turbulence-induced scattering for the first time. A CLS prototype is used to conduct a series of experiments at the Naval Research Lab Simulated Turbulence and Turbidity Environment. The imaging path is subjected to various turbulence intensities and turbidities, which maintained stably over experiment duration. The adaptation of the CLS sensing model to the hybrid scattering environment is discussed. The experimental results with different turbidities and turbulence intensities are presented.
机译:近年来,已经提出了压缩线感测(CLS)主动成像方案用于在强散射介质上成像应用。已经证明了该概念通过模拟和试验箱实验在粒子诱导的散射介质和湍流环境中有效。然而,在许多大气和水下监测应用中,视觉环境的降解可能来自颗粒散射(浊度)和湍流。我们首次研究了由同时颗粒和湍流诱导的散射组成的混合环境中的CLS成像系统。 CLS原型用于在海军研究实验室模拟湍流和浊度环境下进行一系列实验。对成像路径经受各种湍流强度和浊度,其在实验持续时间内保持稳定。讨论了CLS感测模型对混合散射环境的改编。提出了具有不同浊度和湍流强度的实验结果。

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