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Adaptive camouflage of moving targets

机译:移动目标的自适应伪装

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Targets that are well camouflaged under static conditions are often easily detected as soon as they start moving. We investigated and evaluated ways to design camouflage that dynamically adapts to the background and conceals the target while taking the variation in potential viewing directions into account. In a human observer experiment recorded imagery was used to simulate moving (either walking or running) and static soldiers, equipped with different types of camouflage patterns and viewed from different directions. Participants were instructed to search for the soldier and to make a speeded response as soon as they detected the soldier. Mean target detection rate was compared between soldiers in standard (Netherlands) Woodland uniform, in static camouflage (adapted to the local background) and in dynamically adapting camouflage. We investigated the effects of background type and variability on detection performance by varying the soldiers' environment (like bushland and urban). In general, performance was worse for dynamic soldiers compared to static soldiers, confirming the notion that motion breaks camouflage. Furthermore, camouflage performance of the static adaptive camouflage condition was generally much better than for the standard Woodland camouflage. Also, camouflage performance was found to depend on the background. Interestingly, our dynamic camouflage design was outperformed by a method which simply displays the 'exact' background on the camouflage suit, since it is better capable of taking the variability in viewing directions into account. By combining new adaptive camouflage technologies with dynamic adaptive camouflage designs such as the one presented here, it may become possible to prevent detection of moving targets in the (near) future.
机译:一旦开始移动,通常很容易检测到静态条件下伪装的目标。我们调查并评估了设计伪装的方法,这些伪装动态地适应背景并隐藏目标,同时考虑到潜在观看方向的变化。在人类观察者实验中,录制的图像用于模拟移动(步行或运行)和静态士兵,配备不同类型的伪装图案,并从不同的方向观察。参与者被指示搜索士兵并在检测到士兵时立即进行速度回复。在标准(荷兰)林地制服中的士兵之间比较平均目标检测率,静态伪装(适应局部背景)和动态调整伪装。通过改变士兵的环境(如灌木丛和城市),我们调查了背景类型和变异性对检测性能的影响。一般而言,与静态士兵相比,动态士兵的表现更糟糕,确认运动破坏伪装的概念。此外,静态自适应伪装条件的伪装性能通常比标准的林地伪装更好。此外,发现伪装性能取决于背景。有趣的是,我们的动态伪装设计通过一种简单地显示伪装套装上的“确切”背景的方法表现优异,因为它更好地能够考虑观察方向的可变性。通过将新的自适应伪装技术与具有动态自适应伪装设计相结合,可以防止检测(接近)未来的移动目标。

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