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Mobility modeling and analytical solution for spatial traffic distribution in wireless multimedia networks

机译:无线多媒体网络中空间流量分配的移动性建模和分析解决方案

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摘要

In this paper, we propose a general mobility model suitable for wireless multimedia networks. Our model is based on splitting a region into subregions. Furthermore, we make an analogy between subregions as well as their inter-connections with a multi-class Jackson queueing network comprising of infinite-server nodes. The main attribute of such a network is due to its product-form stationary distribution. Using this model, we are able to obtain a closed analytical form for the spatial traffic distribution corresponding to a specific number of network-connected users with different classes of service and mobility in a typical region. Also, we show the flexibility obtained by the proposed mobility model in representing some general distributions such as sum-of-hyper-exponentials (SOHYP), hyper-Erlang and Cox which were previously suggested to model mobility-related statistical parameters, e.g., cell dwell time and channel holding time. Finally, we apply the proposed model to a few mobility scenarios and obtain the resultant active user's location density.
机译:在本文中,我们提出了适用于无线多媒体网络的通用移动性模型。我们的模型基于将一个区域划分为多个子区域。此外,我们在子区域之间以及它们与由无限服务器节点组成的多类Jackson排队网络之间的相互连接进行类比。这种网络的主要属性是由于其产品形式的固定分布。使用此模型,我们能够为典型区域中特定数量的具有不同服务和移动性的网络连接用户对应的空间流量分布获得封闭的分析形式。此外,我们展示了提出的迁移模型在表示某些一般分布(如超指数和(SOHYP),hyper-Erlang和Cox)方面所获得的灵活性,这些分布以前曾建议用来建模与迁移相关的统计参数,例如细胞停留时间和通道保持时间。最后,我们将提出的模型应用于一些移动性场景,并获得最终的活动用户的位置密度。

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