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Evaluation of the thermal contrast of low-temperature ground-based objects

机译:低温地面物体的热对比度评估

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Subject of study. The thermal contrast of low-temperature passive terrain objects is the difference in radiant temper-atures of an object and background in operating spectral regions of air-and ground-based thermal imaging devices for surveillance. Aim of study. The study attempted to provide the designers of thermal imaging devices with initial data for signature features of ground-based objects. Method. The study employed a theoretical analysis on the physical dependences of the formation of thermal contrast in ground-based objects using the previously published model of thermal radiation of the atmosphere, which, in addition to temperature contrast owing to the different thermal inertias of the object and background upon alterations in meteorological conditions, considers the optical properties of the object, solar and environmental (of the Earth's surface and atmosphere) radiation reflected from the object, and viewing direction of three-dimensional objects. Main results. A methodological approach and cor-responding mathematical model were proposed for the quick engineering evaluation of the main signature feature of low-temperature ground-based objects, particularly vehicles surveilled using thermal imaging devices from the upper hemisphere against the background of the Earth's surface at different cloud coverage, i.e., their thermal contrast in the spectral regions of 3-5 and 8-12 mu m corresponding to the atmospheric windows. Accordingly, we presented the analytical expressions for this evaluation considering environmental thermal radiation, direct and scattered solar radiation reflected by the diffuse spherical surface imitating the surveilled object, and its viewing direction. The possibility of thermal contrast variation in the rather wide range and its inversion was demonstrated even for a fixed temperature contrast. An example of a practical application of the proposed model was considered. Practical significance. The developed engineering method for calculating the thermal contrast of ground-based objects can be applied to quickly estimate effectiveness, including the operating range of air-and ground-based thermal imaging devices, and validate the requirements on the main technical parameters of prospective devices of this type.(c) 2023 Optica Publishing Group
机译:研究主题。低温被动地形物体的热对比度是物体和背景在用于监视的空中和地面热成像设备的工作光谱区域中的辐射温度差异。研究目的。该研究试图为热成像设备的设计者提供地面物体特征的初始数据。方法。该研究使用先前发表的大气热辐射模型对地面物体中形成热对比度的物理依赖性进行了理论分析,该模型除了由于物体和背景在气象条件变化时产生的不同热惯性而产生的温度对比外,还考虑了物体的光学特性, 太阳和环境(地球表面和大气层)从物体反射的辐射,以及三维物体的观察方向。主要结果。提出了一种方法学方法和相应的数学模型,用于快速工程化评估低温地基物体的主要特征,特别是利用热成像设备在地球表面背景下对不同云层覆盖的车辆的主要特征,即它们在3-5和8-12 μm光谱区域对应大气窗口的热对比度。因此,我们提出了考虑环境热辐射、模拟被监视物体的漫射球面反射的直射和散射太阳辐射及其观察方向的分析表达式。即使在固定温度对比度下,也证明了在相当宽的范围内热对比度变化及其反转的可能性。会议考虑了所提模型的实际应用实例。现实意义。所开发的用于计算地面物体热对比度的工程方法可以应用于快速估计有效性,包括空中和地面热成像设备的工作范围,并验证对此类预期设备的主要技术参数的要求。(c) 2023 Optica 出版集团

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