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Tracking through laser-induced clutter for air-to-ground directed energy system

机译:通过激光诱导的杂波跟踪空对地定向能量系统

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摘要

The agility and speed with which directed energy can be retargeted and delivered to the target makes a laser weapon highly desirable in tactical battlefield environments. A directed energy system can effectively damage and possibly destroy relatively soft targets on the ground. In order to accurately point a high-energy beam at the target, the directed energy system must be able to acquire and track targets of interest in highly cluttered environments, under different weather, smoke, and camouflage conditions and in the presence of turbulence and thermal blooming. To meet these requirements, we proposed a concept of a multi spectral tracker, which integrates three sensors: SAR radar, a passive MWIR optical tracker, and a range-gated laser illuminated tracker. In this paper we evaluated the feasibility of the integrated optical tracker and arrived to the following conclusions: a) the contrast enhancement by mapping the original pixel distribution to the desired one enhances the target identification capability, b) a reduction of the divergence of the illuminating beam reduces rms pointing error of a laser tracker, c) a clutter removal algorithm based on active contours is capable of capturing targets in highly cluttered environments, d) the daytime rms pointing error caused by anisoplanatism of the track point to the aim point is comparable to the diffraction-limited beam spot size, f) the peak intensity shift from the optical axis caused by thermal blooming at 5 km range for the air-to-ground engagement scenario is on the order of 8 μrad, and it is 10 μrad at 10 km range, and e) the thermal blooming reduces the peak average power in a 2 cm bucket at 5 km range by a factor of 8, and it reduces the peak average power in the bucket at 10 km range by a factor of 22.
机译:具有定向能量的敏捷性和速度可以重新定位并传送到目标,使激光武器在战术战场环境中非常受欢迎。定向的能量系统可以有效地损坏并可能在地面上破坏相对柔软的目标。为了准确地指向目标的高能量光束,指向的能量系统必须能够在不同的天气,烟雾和伪装条件下以及湍流和热量的情况下获得高度杂乱的环境中感兴趣的目标和跟踪感兴趣的目标。盛开。为满足这些要求,我们提出了一种多光谱跟踪器的概念,该概念集成了三个传感器:SAR雷达,无源MWIR光学跟踪器和范围门控激光照明跟踪器。在本文中,我们评估了集成光学跟踪器的可行性,并到达了以下结论:a)通过将原始像素分布映射到所需的原始像素分布来增强目标识别能力,b)减少照明的分歧光束降低了激光跟踪器的rms指向误差,c)基于主动轮廓的杂波去除算法能够捕获高度混乱的环境中的目标,d)由轨道点对瞄准点的轨道点的主张引起的日间rms指向误差是可比的对于衍射限制的光束点尺寸,f)由在5km范围内的热盛开的光轴从用于空对地接合场景引起的光轴的峰值强度偏移是约为8μr的阶数,并且它是10μrad 10公里范围和e)热盛装在5公里范围内的2厘米桶中的峰值平均功率降低了8倍,并且它在10公里的RA中降低了桶中的峰值平均功率nge一个超过22倍。

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