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Study on Camouflage Effect of Targets with Different Characteristics under Typical Background

机译:典型背景下不同特征目标的伪装效果研究

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With the rapid development of infrared detecting and homing technology, it is important for us to analyze infrared camouflage effect of ground targets to improve the survivability. In the paper, factors such as the effect of atmosphere between detectors and targets, characteristics of targets and background and atmospheric radiance including directly transmitted solar irradiance are taken into account in long-distance detecting. The concept of RARD (relative apparent radiance difference) between targets and background is proposed and the camouflage effect of ground targets can be evaluated precisely. MODTRAN 4.0 is used to analyze the camouflage effect of targets. In MODTRAN, solar zenith angle, common background, emissivity and temperature of targets are selected to calculate RARD under certain atmosphere condition. Simulation results show that RARD is affected by the solar zenith angle significantly in middle infrared wavelength region, but hardly in long-wave infrared region. Under the special background, according to the target temperature, proper coating with unchanged emissivity is selected to camouflage the target all day in long-wave infrared region. However, for the changing background, the stealth coating with variable emissivity should be adopted. In addition, for the same target, it is even more difficult to achieve good camouflage effect at both medium infrared band and long wave infrared band.
机译:随着红外探测与制导技术的飞速发展,对地面目标的红外伪装效果进行分析以提高其生存能力具有重要意义。本文在长距离探测中考虑了诸如探测器与目标之间的大气影响,目标与背景的特性以及大气辐射等因素,包括直接透射的太阳辐照度。提出了目标与背景之间的RARD(相对视在辐射度差)的概念,可以精确评估地面目标的伪装效果。 MODTRAN 4.0用于分析目标的伪装效果。在MODTRAN中,选择太阳天顶角,共同背景,辐射率和目标温度,以在特定大气条件下计算RARD。仿真结果表明,RARD在中红外波长区域受太阳天顶角影响较大,而在长波红外区域几乎不受太阳天顶角影响。在特殊的背景下,根据目标温度,选择发射率不变的适当涂层,以在长波红外区域全天伪装目标。但是,对于变化的背景,应采用发射率可变的隐形涂层。另外,对于同一目标,在中红外波段和长波红外波段都很难获得良好的伪装效果。

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