首页> 外文会议>Technologies for Advanced Heterogeneous Networks II; Lecture Notes in Computer Science; 4311 >Modeling Mobility with Behavioral Rules: The Case of Incident and Emergency Situations
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Modeling Mobility with Behavioral Rules: The Case of Incident and Emergency Situations

机译:用行为规则对移动性进行建模:突发事件和紧急情况

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Mobility models must scale accordingly to the application and reflect real scenarios in which wireless devices are deployed. Typical examples of scenarios requiring precise mobility models are critical situations (e.g., vehicular traffic incident, escaping pedestrians in emergency situations) - for which the ad hoc paradigm was first designed for. In these particular situations, autonomous agents of communicating devices will assist mobile users in their displacements either to avoid traffic jam due to incidents or find the closest emergency exit. But, since the environment conditions (i.e., flow of pedestrians or vehicles and incidents) may change during time in part due to mobility itself, autonomous agents assisting mobile users in their displacements must constantly exchange information and dynamically adapt to the perceived situations. This requires to precisely modeling both mobility (vehicular and pedestrian traffic) and communications systems between agents. Unfortunately, these two areas have been treated separately, although mobility and network simulators should be tightly bound. In this paper, we propose a new modeling approach to mobility, namely Behavioral Mobility models (BM), which decomposes mobility into simple atomic individual behaviors. Combined, these behaviors yield realistic displacement patterns by reproducing the mobility observed at small scales in every day life, in both space and time. We also propose to bind mobility and network simulators to run joint simulations in order to push simulations to more realness. This approach combined to BM models is particularly suited to simulate critical situations where mobility is influenced by the changing environment conditions. We demonstrate the feasibility of our approach with two cases studies.
机译:移动性模型必须根据应用程序进行相应缩放,并反映部署无线设备的实际情况。需要精确的机动性模型的场景的典型示例是紧急情况(例如,车辆交通事故,紧急情况下逃逸的行人)-最初是针对这种情况而设计的。在这些特定情况下,通信设备的自主代理将协助移动用户避免他们因事故而导致的交通拥堵或找到最近的紧急出口。但是,由于环境条件(即,行人或车辆的流动和事故)可能在一定时间内由于移动性本身而改变,因此协助移动用户移动的自治代理必须不断交换信息并动态地适应感知到的情况。这要求对座席之间的移动性(车辆和行人交通)和通信系统进行精确建模。不幸的是,尽管应该严格限制移动性和网络模拟器,但这两个领域已经分开处理。在本文中,我们提出了一种新的移动性建模方法,即行为移动性模型(BM),该模型将移动性分解为简单的原子个体行为。结合起来,这些行为通过再现在日常生活中在空间和时间上以小规模观察到的迁移率,得出了逼真的位移模式。我们还建议将移动性和网络仿真器绑定在一起以运行联合仿真,以使仿真更加真实。这种与BM模型结合的方法特别适合于模拟移动环境受不断变化的环境影响的紧急情况。我们通过两个案例研究证明了我们方法的可行性。

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