结合敌方火力和光学探测

Carl Brännlund, J. Tidström, M. Henriksson, L. Sjöqvist
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引用次数: 5

摘要

狙击手和其他光学制导武器系统是军事行动中的严重威胁。我们研究了一种基于SWIR(短波红外)摄像机的系统,该系统具有在大视场射击前后检测和定位狙击手的能力。高帧率swr -相机允许枪口闪烁的时间轮廓的分辨率,这是与步枪子弹的弹射相关的红外特征。在早期的研究中,FOI已经验证了该系统探测和识别狙击枪口闪光的能力。在这项工作中,我们通过增加一个用于光学检测的激光通道来扩展系统。在相机视场上扫描具有狭缝状光束轮廓的激光二极管,以检测光学瞄准具的复古反射。光学探测系统已经在1.15公里的不同距离上进行了测试,显示了在日光下探测步枪瞄准镜的可行性。高速摄像机通过分析时间数据提供了识别虚警的可能性。由于大气湍流引起的强度变化,可以通过孔径平均来区分小型瞄准具和大型反射器,尽管目标只覆盖单个像素。结果表明,通过增加扫描矩形激光狭缝,可以将光学检测与枪口闪光检测相结合。通过持续监视一个相对较大的视场的整体光学探测能力看起来很有希望。这种多功能系统将成为探测射击前后狙击手的重要工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Combined hostile fire and optics detection
Snipers and other optically guided weapon systems are serious threats in military operations. We have studied a SWIR (Short Wave Infrared) camera-based system with capability to detect and locate snipers both before and after shot over a large field-of-view. The high frame rate SWIR-camera allows resolution of the temporal profile of muzzle flashes which is the infrared signature associated with the ejection of the bullet from the rifle. The capability to detect and discriminate sniper muzzle flashes with this system has been verified by FOI in earlier studies. In this work we have extended the system by adding a laser channel for optics detection. A laser diode with slit-shaped beam profile is scanned over the camera field-of-view to detect retro reflection from optical sights. The optics detection system has been tested at various distances up to 1.15 km showing the feasibility to detect rifle scopes in full daylight. The high speed camera gives the possibility to discriminate false alarms by analyzing the temporal data. The intensity variation, caused by atmospheric turbulence, enables discrimination of small sights from larger reflectors due to aperture averaging, although the targets only cover a single pixel. It is shown that optics detection can be integrated in combination with muzzle flash detection by adding a scanning rectangular laser slit. The overall optics detection capability by continuous surveillance of a relatively large field-of-view looks promising. This type of multifunctional system may become an important tool to detect snipers before and after shot.
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