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Investigating the survivability of drone swarms with flocking and swarming flight patterns using Virtual Reality

机译:使用虚拟现实技术研究具有成群和成群飞行模式的无人机群的生存能力

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It is now possible to deploy swarms of drones with populations in the thousands. There is growing interest in using such swarms for defense, and it has been natural to program them with bio-mimetic motion models such as flocking or swarming. However, these motion models evolved to survive against predators, not enemies with modern firearms. This paper presents experimental data that compares the survivability of several motion models for large numbers of drones. This project tests drone swarms in Virtual Reality (VR), because it is prohibitively expensive, technically complex, and potentially dangerous to fly a large swarm of drones in a testing environment. We model the behavior of drone swarms flying along parametric paths in both tight and scattered formations. We add random motion to the general motion plan to confound path prediction and targeting. We describe an implementation of these flight paths as game levels in a VR environment. We then allow players to shoot at the drones and evaluate the difference between flocking and swarming behavior on drone survivability.
机译:现在可以部署成千上万人口的无人机群。使用这样的群来进行防御的兴趣越来越浓厚,很自然地用仿生运动模型(例如植绒或群化)对它们进行编程。但是,这些运动模型演变成可以抵抗掠食者,而不是拥有现代枪支的敌人。本文提供了实验数据,用于比较多种运动模型对大量无人机的生存能力。该项目在虚拟现实(VR)中测试无人机群,因为在测试环境中飞行一大批无人机非常昂贵,技术复杂且具有潜在危险。我们对在密集和分散地层中沿参数路径飞行的无人机群的行为进行建模。我们在一般运动计划中添加随机运动,以混淆路径预测和目标定位。我们将这些飞行路径的实现描述为VR环境中的游戏级别。然后,我们允许玩家射击无人驾驶飞机,并评估植绒和蜂群行为对无人机生存能力的影响。

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