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Modeling and Performance of a Mesh Network with Dynamically Appearing and Disappearing Femtocells as Additional Internet Gateways

机译:具有动态出现和消失的毫微微小区作为附加Internet网关的网状网络的建模和性能

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The number of hops from Mesh Routers (MRs) to an Internet gateway (IGW) plays an important role in determining the performance of a wireless mesh network (WMN). A recent patent has introduced a mechanism of using an existing femtocell (FC) as an additional potential IGW so that the performance of a WMN could be enhanced. Such an integration of WMN with FCs enables an increase in WMN's overall capacity. But, due to FCs' unpredictable operating times and uninformed disconnections, MRs require reliable and efficient schedule for switching between available FCs which has not been analyzed in the patent. The switching can be done in a push based preemptive or a pull based non-preemptive manner. In this paper, we formulate both these switching schemes for a WMN-FC integrated network as approximate statistical models based on a Markovian process. We also determine a switching schedule of FCs for each of MR based on reliable uncapacitated facility location (RUFL) problem. We extend an existing RUFL problem to incorporate dynamic operating nature of multiple FCs which display dynamic available/unavailable patterns for additional potential IGWs. Extensive simulations are carried out to validate our proposed statistical models and establish the performance of these switching schemes.
机译:从网状路由器(MR)到Internet网关(IGW)的跳数在确定无线网状网络(WMN)的性能中起着重要作用。最近的专利已经引入了一种机制,该机制使用现有的毫微微小区(FC)作为额外的潜在IGW,从而可以增强WMN的性能。 WMN与FC的这种集成可以提高WMN的整体容量。但是,由于FC的不可预测的工作时间和不明的断开连接,MR需要可靠,高效的时间表来在可用FC之间进行切换,而该专利尚未进行分析。可以以基于推送的抢占方式或基于拉取的非抢占方式来完成切换。在本文中,我们将这两种WMN-FC集成网络的交换方案公式化为基于马尔可夫过程的近似统计模型。我们还根据可靠的无能力设施位置(RUFL)问题确定每个MR的FC切换时间表。我们扩展了现有的RUFL问题,以合并多个FC的动态操作特性,这些FC显示动态的可用/不可用模式以用于其他潜在IGW。进行了广泛的仿真,以验证我们提出的统计模型并确定这些切换方案的性能。

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