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Experiments and models of active and thermal imaging under bad weather conditions

机译:恶劣天气条件下主动和热成像的实验与模型

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Thermal imaging cameras are widely used in military contexts for their night vision capabilities and their observation range; there are based on passive infrared sensors (e.g. MWIR or LWIR range). Under bad weather conditions or when the target is partially hidden (e.g. foliage, military camouflage) they are more and more complemented by active imaging systems, a key technology to perform target identification at long range. The 2D flash imaging technique is based on a high powered pulsed laser source that illuminates the entire scene and a fast gated camera as the imaging system. Both technologies are well experienced under clear meteorological conditions; models including atmospheric effects such as turbulence are able to predict accurately their performances. However, under bad weather conditions such as rain, haze or snow, these models are not relevant. This paper introduces new models to predict performances under bad weather conditions for both active and infrared imaging systems. We point out their effects on controlled physical parameters (extinction, transmission, spatial resolution, thermal background, speckle, turbulence). Then we develop physical models to describe their intrinsic characteristics and their impact on the imaging system performances. Finally, we approximate these models to have a "first order" model easy to deploy for industrial applications. This theoretical work will be validated on real active and infrared data.
机译:热成像摄像机广泛用于其夜视功能及其观察范围的军事背景下;基于被动红外传感器(例如MWIR或LWIR范围)。在恶劣的天气条件下或当目标部分隐藏时(例如,叶子,军事伪装),它们越来越辅以主动成像系统,是在长期执行目标识别的关键技术。 2D闪存成像技术基于高功率脉冲激光源,其照亮整个场景和快速门控相机作为成像系统。两种技术都在清晰的气象条件下经历了很好的经验;包括大气效应(如湍流)的模型能够准确地预测它们的性能。然而,在雨,阴霾或雪等恶劣天气条件下,这些模型不相关。本文介绍了新模型,以预测有效和红外成像系统的恶劣天气条件下的性能。我们指出了对受控物理参数的影响(灭火,传输,空间分辨率,热背景,斑点,湍流)。然后,我们开发物理模型来描述其内在特征及其对成像系统性能的影响。最后,我们将这些模型近似有一个“一阶”模型易于部署工业应用。在真正的主动和红外数据上将验证该理论工作。

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