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Mobility Models for Wireless Networks: Challenges, Pitfalls, and Successes

机译:无线网络的移动模型:挑战,陷阱和成功

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The performance of any mobile network is highly influenced by the mobility patterns of nodes in the network. In fact mobility behavior is the most important environmental factor that determines performance and influences network design. Thus it is important that we develop models that. 1. accurately capture the mobility of nodes, while at the same time. 2. are amenable to mathematical analysis and/or efficient simulation. In the past, the wireless networking community relied on simple models such as random walk and random way-point. However, the first of these models was found to be too simplistic although very useful in analysis and simulation. The latter, on the other hand was widely accepted and used in simulations. However, recently it was disvcovered that practitioners had severely misued it in simulations. That and the growing appreciation that random waypoint is unrealistic has led to significant activities recently focusing on the development of parsimonious and accurate models describing the movement of nodes in mobile wireless networks. These have included efforts to model connectivity within sparse mobile networks associated with people and vehicles, and with the movement of units in miliatary settings. This talk will provide some of the early history in modeling mobility, including some of the failures described above. The talk will then describe the more recent application of a wide range of techniques to account for mobility. These range from Markov chains to ODE-based fluid models, from the use of exponetial, lognormal, and heavy-tailed distributions to geometric weighted Gaussian distributions for intercontact times, and from the use of discrete state models to continuous state PDE-based models. The goal of the talk is to provide a better understanding of the issues underlying the accurate modeling of mobiltiy, recent progress in addressing these issues and the challenges that different approaches place on simulation.
机译:任何移动网络的性能受到网络中节点的移动模式的高度影响。事实上,流动性行为是确定性能和影响网络设计的最重要的环境因素。因此,我们开发模型是重要的。 1.准确地捕获节点的移动性,同时。 2.适用于数学分析和/或高效模拟。在过去,无线网络社区依赖于简单的模型,例如随机散步和随机方式点。然而,发现这些模型中的第一个太简单,尽管在分析和仿真中非常有用。另一方面,后者被广泛接受并用于模拟。然而,最近它被解除了,从业者在模拟中严重误导了它。而且,随机航路点是不现实的,随机航路点的不现一程度导致了重要的活动,最近侧重于将节点移动在移动无线网络中的节点运动的解析和准确模型的发展。这些包括在与人和车辆相关联的稀疏移动网络中进行建模连接,以及利用里提琴设置的移动。此谈话将提供建模移动性的一些早期历史,包括上述一些故障。然后,谈话将描述更近期应用范围内的更新以解释移动性。这些范围从马尔可夫链到基于颂的流体模型,从使用指数,伐木和重尾的分布到间后的几何加权高斯分布,并且从使用离散状态模型到连续的基于PDE的模型。谈话的目标是更好地了解更好地了解了MobiLtiy的准确建模,最新进展的问题以及解决这些问题的挑战以及不同方法在模拟中的挑战。

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