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Channel on demand: Optimal capacity for cooperative multi-channel multi-interface wireless mesh networks

机译:按需信道:协作多信道多接口无线网状网络的最佳容量

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Cooperative communication (CC) has been proposed recently as an effective way to mitigate channel impairments. It has been shown that cooperative communications have the potential to significantly increase the capacity of wireless mesh networks (WMNs). However, most of the works focus on single channel based WMNs. In this paper, we will demonstrate how the cooperative communication benefits multi-channel multiinterface WMNs. The two strategies, amplify-and-forward (AF) and decode-and-forward (DF), have been widely used in cooperative communication to enhance the network capacity. We propose a novel mathematical model called channel-on-demand (COD), which combines the two strategies, together with direct transmission (DT). COD investigates the maximum capacity to accumulate the network resources, and provides the optimal interface assignment for real-time flows in cooperative multichannel multi-interface wireless mesh networks (CM2WMNs). COD analyzes maximum capacity for each node with both unidirectional flows and bidirectional flows. Based on the analytical results of COD, we provide four rules to apply analytical results. We also evaluate the proposed algorithm and compare it with simulation results using NS-2. Through simulation results, we show the significant rate gains achieved in CM2WMNs.
机译:最近,合作通信(CC)已被提议作为缓解信道损害的有效方法。已经表明,协作通信具有显着增加无线网状网络(WMN)容量的潜力。但是,大多数工作都集中在基于单信道的WMN上。在本文中,我们将演示协作通信如何使多通道多接口WMN受益。放大转发(AF)和解码转发(DF)这两种策略已被广泛用于协作通信中以增强网络容量。我们提出了一种新颖的数学模型,称为按需通道(COD),该模型结合了两种策略以及直接传输(DT)。 COD研究了最大的容量来累积网络资源,并为协作多通道多接口无线网格网络(CM2WMN)中的实时流提供了最佳的接口分配。 COD分析具有单向流和双向流的每个节点的最大容量。基于化学需氧量的分析结果,我们提供了四个规则来应用分析结果。我们还评估了提出的算法,并将其与使用NS-2的仿真结果进行了比较。通过仿真结果,我们显示了CM2WMNs的显着速率提升。

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