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Network Slicing Games: Enabling Customization in Multi-Tenant Mobile Networks

机译:网络切片游戏:在多租户移动网络中启用自定义

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Network slicing to enable resource sharing among multiple tenants-network operators and/or services-is considered as a key functionality for next generation mobile networks. This paper provides an analysis of a well-known model for resource sharing, the share-constrained proportional allocation mechanism, to realize network slicing. This mechanism enables tenants to reap the performance benefits of sharing, while retaining the ability to customize their own users' allocation. This results in a network slicing game in which each tenant reacts to the user allocations of the other tenants so as to maximize its own utility. We show that, for elastic traffic, the game associated with such strategic behavior converges to a Nash equilibrium. At the Nash equilibrium, a tenant always achieves the same or better performance than that of a static partitioning of resources, thus providing the same level of protection as static partitioning. We further analyze the efficiency and fairness of the resulting allocations, providing tight bounds for the price of anarchy and envy-freeness. Our analysis and extensive simulation results confirm that the mechanism provides a comprehensive practical solution to realize network slicing. Our theoretical results also fills a gap in the analysis of this resource allocation model under strategic players.
机译:允许在多个租户之间共享资源的网络切片-网络运营商和/或服务-被视为下一代移动网络的关键功能。本文分析了一种著名的资源共享模型,即份额受限的比例分配机制,以实现网络切片。这种机制使租户可以从共享中受益,同时保留自定义用户分配的能力。这导致了一个网络切片游戏,其中每个租户对其他租户的用户分配做出反应,以最大化其自身的效用。我们表明,对于弹性交通,与这种战略行为相关的博弈收敛为纳什均衡。在Nash平衡下,租户始终可以获得与静态分区资源相同或更好的性能,从而提供与静态分区相同的保护级别。我们进一步分析了由此产生的分配的效率和公平性,为无政府状态和令人羡慕的价格提供了严格的界限。我们的分析和广泛的仿真结果证实,该机制为实现网络切片提供了全面的实用解决方案。我们的理论结果也填补了战略参与者下这种资源分配模型分析的空白。

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