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MODELING AND ANALYSIS OF THE EFFECTS OF STARTLE REACTION ON GROUP COORDINATION

机译:惊吓反应对群体协调影响的建模与分析

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Startle reaction is an alarm behavior observed in animal groups during anti-predatory response or fear-inducing stimulation. This behavior is characterized by spontaneous change in heading direction and increasing speed that can drastically affect group coordination. In this work, we leverage a mathematical model of fish social behavior to recreate startle reaction. Specifically, we model startle reaction through a biased jump diffusion process, where the jumps process captures sudden and fast changes of heading direction observed during this escaping behavior. Then, using extensive numerical simulations, we test their effects on group of fish including an informed individual prescribing the direction of motion and several followers by systematically varying the frequency and intensity of the sudden and fast turns introduced in the heading direction of a single individual. We demonstrate the emergence of novel form of leadership and phase transition between complete ordered states and disorganized states. In addition, we evidence that at specific range of frequencies and amplitudes, the initiation of this behavior might be utilized to divert group followers from their reference trajectory while keeping them in a synchronized state with the startling individual. Our findings offer a new paradigm to recreate the emergence of leadership applicable to divert or contain multi-vehicle systems.
机译:Surrowle反应是在抗掠夺性反应或恐惧诱导刺激期间在动物组中观察到的警报行为。这种行为的特点是标题方向的自发变化和增加速度,可以大大影响组协调。在这项工作中,我们利用鱼类社会行为的数学模型来重建惊吓反应。具体地,我们通过偏置跳跃扩散过程模拟惊吓反应,其中跳跃过程捕获在这种逃逸行为期间观察到的标题方向的突然和快速变化。然后,使用广泛的数值模拟,我们通过系统地改变在单个个体的标题方向上引入的突然和快速转弯的频率和强度,对包括规定运动方向和几个粉丝的通知个人的效果来测试它们的效果。我们展示了完整有序国家和混乱国家之间新颖的领导力和阶段转型的出现。此外,我们证据表明在特定的频率和幅度范围内,可以利用这种行为的启动来将粉丝从其参考轨迹转移,同时将它们与令人惊恐的个体保持在同步状态。我们的调查结果提供了一种新的范式来重建适用于转移或包含多辆汽车系统的领导地位的出现。

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