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GENIUS: A Computational Modeling Framework for Counter-Terrorism Planning and Response

机译:天才:反恐规划和反应的计算建模框架

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Public safety has been a great concern in recent years as terrorism occurs everywhere. When a public event is held in an urban environment like Olympic games or soccer games, it is important to keep public safe and at the same time, to have a specific plan to control and rescue the public in the case of a terrorist attack. In order to better position public safety in communities against potential threats, it is of utmost importance to identify existing gaps, define priorities and focus on developing approaches to address those. In this paper, we present a system which aims at providing a decision support, threats response planning and risk assessment. Threats can be in the form of Chemical, Biological, Radiological, Nuclear and Explosive (CBRNE). In order to assess and manage possible risks of such attacks, we have developed a computational framework of simulating terrorist attacks, crowd behaviors, and police or safety guards' rescue missions. The characteristics of crowd behaviors are modeled based on social science research findings and our own virtual environment experiments with real human participants. Based on gender and age, a person has a different behavioral characteristic. Our framework is based on swarm intelligence and agent-based modeling, which allows us to create a large number of people with specific behavioral characteristics. Different test scenarios can be created by importing or creating 3D urban environments and putting certain terrorist attacks (such as bombs or toxic gas) on specific locations and time-lines.
机译:近年来,由于恐怖主义发生在任何地方,公共安全都是一个很好的担忧。当一个公共活动在奥运会或足球比赛等城市环境中举行时,将公益安全,同时保持一个特定的计划,以便在恐怖袭击的情况下控制和挽救公众。为了更好地在社区中的公共安全来解决潜在威胁,最重要的是确定现有的差距,确定优先事项,并专注于制定解决这些方法的方法。在本文中,我们提出了一个旨在提供决策支持,威胁响应计划和风险评估的系统。威胁可以是化学,生物,放射,核和爆炸(CBRNE)的形式。为了评估和管理这种攻击可能的风险,我们开发了模拟恐怖主义攻击,人群行为和警察或安全卫士救援任务的计算框架。人群行为的特点是基于社会科学研究结果和我们自己的虚拟环境实验,具有真正的人类参与者。基于性别和年龄,一个人具有不同的行为特征。我们的框架是基于群体智能和基于代理的建模,这使我们能够创建具有特定行为特征的大量人员。可以通过导入或创建3D城市环境来创建不同的测试场景,并在特定位置和时间线上将某些恐怖袭击(如炸弹或有毒气体)创建。

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