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Performance Analysis of Large Multi-Interface Wireless Mesh Networks with Multi-Different Bandwidth Channel

机译:具有不同带宽信道的大型多接口无线网状网络的性能分析

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In this paper, we study the asymptotic throughput capacity of a static multi-channel multi-interface infrastructure wireless mesh network (InfWMN) wherein each infrastructure node has m interfaces and c channels of unequal bandwidth are available. First, an upper bound on the InfWMN per-user capacity is established. Then, the feasible lower bound is derived by construction. We prove that both lower and upper bounds are tight. We limit our analysis for more practical case of . However, for the asymptotic upper bound, our analysis can be used for the general case in which there is no constraint on m and c. Our study shows that in such a network with N randomly distributed mesh clients, N regularly placed mesh routers, and N gateways, the asymptotic per-client throughput capacity has different bounds, which depend on the ratio between the total available bandwidth for the network and the sum of m first greatest data rates of c available channels, i.e., . The results of this paper are more general compared to the existing published researches. In addition, in the case that , our results reduce to the previously reported studies. This implies that our study - s comprehensive compared to the formerly published researches.
机译:在本文中,我们研究了静态多通道多接口基础设施无线网状网络(InfWMN)的渐近吞吐能力,其中每个基础设施节点具有m个接口,并且c个通道的带宽不相等。首先,确定InfWMN每用户容量的上限。然后,通过构造导出可行的下界。我们证明上下限都是紧密的。我们将分析限制在更实际的情况下。但是,对于渐近上限,我们的分析可以用于对m和c没有约束的一般情况。我们的研究表明,在具有N个随机分布的网状客户端,N个规则放置的网状路由器和N个网关的网络中,渐近每客户端吞吐量的容量具有不同的界限,这取决于网络的总可用带宽与c个可用信道的m个第一最大数据速率的总和,即。与现有已发表的研究相比,本文的结果更为笼统。此外,在的情况下,我们的结果将简化为先前报告的研究。这意味着我们的研究与以前发表的研究相比是全面的。

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