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首页> 外文期刊>IEEE/ACM Transactions on Networking >Information-Theory Based Optimal Location Management Schemes for Integrated Multi-System Wireless Networks
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Information-Theory Based Optimal Location Management Schemes for Integrated Multi-System Wireless Networks

机译:集成多系统无线网络中基于信息论的最佳位置管理方案

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In a multi-system environment where a mobile node can utilize multiple interfaces and simultaneously connect to multiple providers, new opportunities exist for efficient location management strategies spanning heterogeneous cellular wireless networks. In this paper, an integrated framework is developed for location management in such a multi-system, fourth generation (4G) wireless networks. This information-theoretic framework allows each individual sub-system to operate fairly independently, and does not require the knowledge of individual sub-network topologies. An efficient location management in such a loosely coupled network is designed by having a mobile node view its movement as a vector-valued sequence, and then transmit this sequence in an entropy coded form to the network. We demonstrate how an intelligent, integrated paging strategy must consider the joint residence probability distribution of a mobile node in multiple sub-networks. We prove that the determination of an optimal paging sequence is $NP$-complete, and also propose an efficient greedy heuristic to compute the paging sequence, both without and with bounds on the paging delay. Three different location tracking strategies are proposed and evaluated; they differ in their degrees of centralized control and provide tradeoff between the location update and paging costs. Simulation experiments demonstrate that our proposed schemes can result in more than 50% savings in both update and paging costs, in comparison with the basic movement-based, multi-system location management strategy.
机译:在移动节点可以利用多个接口并同时连接到多个提供商的多系统环境中,存在跨越异构蜂窝无线网络的有效位置管理策略的新机会。在本文中,开发了一种集成框架,用于在这样的多系统第四代(4G)无线网络中进行位置管理。这种信息理论框架允许每个单独的子系统相当独立地运行,并且不需要了解单独的子网拓扑。通过让移动节点将其移动视为矢量值序列,然后以熵编码的形式将该序列发送到网络,来设计这种松耦合网络中的有效位置管理。我们展示了一种智能的,集成的寻呼策略如何必须考虑多个子网中移动节点的联合驻留概率分布。我们证明最优寻呼序列的确定是$ NP $ -complete,并且还提出了一种有效的贪婪启发式方法来计算寻呼序列,无论是否有寻呼延迟限制。提出并评估了三种不同的位置跟踪策略;它们的集中控制程度不同,并且在位置更新和寻呼成本之间进行权衡。仿真实验表明,与基于移动的基本多系统位置管理策略相比,我们提出的方案可以节省50%的更新和寻呼成本。

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