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Imaging through atmospheric turbulence for laser based C-RAM systems: an analytical approach

机译:通过基于激光的C-RAM系统的大气湍流成像:分析方法

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High Energy Laser weapons (HEL) have unique attributes which distinguish them from limitations of kinetic energy weapons. HEL weapons engagement process typical starts with identifying the target and selecting the aim point on the target through a high magnification telescope. One scenario for such a HEL system is the countermeasure against rockets, artillery or mortar (RAM) objects to protect ships, camps or other infrastructure from terrorist attacks. For target identification and especially to resolve the aim point it is significant to ensure high resolution imaging of RAM objects. During the whole ballistic flight phase the knowledge about the expectable imaging quality is important to estimate and evaluate the countermeasure system performance. Hereby image quality is mainly influenced by unavoidable atmospheric turbulence. Analytical calculations have been taken to analyze and evaluate image quality parameters during an approaching RAM object. In general, Kolmogorov turbulence theory was implemented to determine atmospheric coherence length and isoplanatic angle. The image acquisition is distinguishing between long and short exposure times to characterize tip/tilt image shift and the impact of high order turbulence fluctuations. Two different observer positions are considered to show the influence of the selected sensor site. Furthermore two different turbulence strengths are investigated to point out the effect of climate or weather condition. It is well known that atmospheric turbulence degenerates image sharpness and creates blurred images. Investigations are done to estimate the effectiveness of simple tip/tilt systems or low order adaptive optics for laser based C-RAM systems.
机译:高能量激光武器(HEL)具有独特的属性,将它们与动能武器的局限区分开来。 HEL武器参与过程典型的典型开始,通过高倍率望远镜识别目标并选择目标上的目标点。这种HEL系统的一种情况是对火箭,火炮或砂浆(RAM)物体的对策,以保护船舶,营地或其他基础设施免受恐怖袭击。对于目标识别,尤其是解决目标点,确保RAM对象的高分辨率成像很重要。在整个弹道航班期间,对期望的成像质量的了解对于估计和评估对策系统性能非常重要。因此,图像质量主要受到不可避免的大气湍流的影响。已经采取分析计算来分析和评估接近RAM对象的图像质量参数。一般来说,实施了Kolmogorov湍流理论以确定大气相干长度和等间角。图像采集在长短的曝光时间之间区分以表征尖端/倾斜图像移位和高阶湍流波动的影响。两种不同的观察者位置被认为是显示所选传感器站点的影响。此外,研究了两种不同的湍流强度以指出气候或天气状况的影响。众所周知,大气湍流退化图像清晰度并产生模糊的图像。进行调查来估计基于激光的C-RAM系统的简单尖端/倾斜系统或低阶自适应光学器件的有效性。

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