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Agent-based modeling and simulations of terrorist attacks combined with stampedes

机译:基于代理的恐怖主义攻击的建模与模拟与盖章相结合

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As a global problem, the terrorism leads to high death tolls each year. During terrorist attacks, the direct death is caused by terrorists attacking civilians. However, indirect death caused by stampedes should not be underestimated. Under great panic, most civilians were running disorderly, rushing into limited number of Exits, which causes stampede injuries and deaths. To explore this dual-mechanism dynamics, we build the agent-based modeling of particle system. Civilians lose blood when attacked, which is the attack mechanism, or crashed and trampled by others civilians, which is the stampede mechanism. For all civilians, the blood variable determines the physical status of being strong, healthy, weak, injured, and dead. Five key factors, such as the perception range, the number of Exits, the density of civilians, the number of terrorists, and attack strategies, are introduced into the model. We run each simulation repeatedly for multiple times and take the averaged survival rate, attack death, and stampede death as robust outcomes. The collision damage has the phase transition effects between stampede and attack deaths. The perception range R have the peak effect on the survival rate and the trough effect on both stampede and attack deaths. It expands understandings of human behavior dynamics, and helps to predict the dynamics and outcomes in advance. The optimal perception range can be solved accordingly, to practically guide the public facility planning and regular emergency training in real-life. (C) 2020 Elsevier B.V. All rights reserved.
机译:作为一个全球问题,恐怖主义导致每年的高死亡人数。在恐怖袭击中,直接死亡是由袭击平民的恐怖分子造成的。然而,由冲压率引起的间接死亡不应被低估。在极大的恐慌下,大多数平民都在运行无序,涌入有限的出口,导致踩踏伤害和死亡。为了探索这种双重机制动态,我们构建了基于代理的粒子系统建模。攻击时平民失去血液,这是攻击机制,或者被其他平民坠毁,撞击,这是踩踏机制。对于所有平民,血液变量决定了强大,健康,弱,受伤和死亡的身体状况。五个关键因素,如感知范围,出口的数量,平民密度,恐怖主义者的数量和攻击策略,被引入模型。我们多次反复运行每次模拟,并按照稳健的结果进行平均的生存率,攻击死亡,攻击死亡和踩踏死亡。碰撞损坏具有踩踏和攻击死亡之间的相变效应。感知范围r对生存率的峰值效应和对踩踏和攻击死亡的槽效应。它扩大了人类行为动态的理解,并有助于提前预测动态和结果。最佳感知范围可以相应地解决,实际上指导公共设施规划和现实生活中的常规紧急培训。 (c)2020 Elsevier B.v.保留所有权利。

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