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Rate-Diversity and Resource-Aware Broadcast and Multicast in Multi-rate Wireless Mesh Networks

机译:多速率无线网状网络中的速率分集和资源感知广播和组播

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This paper focuses on the problem of increasing the traffic capacity (volume of admissible traffic) of broadcast and multicast flows in a wireless mesh network (WMN). We study and suggest routing strategies where the process of constructing the forwarding tree considers three distinct features: (a) the ability of individual mesh nodes to perform link-layer broadcasts at multiple rates, (b) the wireless broadcast advantage, whereby a single broadcast transmission covers multiple neighboring receivers and (c) the residual transmission capacity at a WMN node, subject to intereference-based constraints from existing traffic flows in its neighborhood. Our metric of interest is the the total number of broadcast and multicast flows that can be admitted into the network, without resulting in unacceptable degradation in metrics such as packet loss and dissemination latency. Our discrete event simulations show that the broadcast tree construction heuristic which takes both transmission rate and residual bandwidth into account out-performs those that do not. Building on our work on resource-aware broadcast tree construction, we propose a resource-aware multicast tree construction algorithm which exploits the multiple link-layer rates, the wireless broadcast advantage and the amount of resources available. Simulation results show that this algorithm performs better than heuristics based on pruning a broadcast tree or shortest path trees.
机译:本文着重于增加无线网状网络(WMN)中广播和多播流的通信量(允许通信量)的问题。我们研究并提出了路由策略,其中构造转发树的过程考虑了三个不同的特征:(a)各个网格节点以多种速率执行链路层广播的能力,(b)无线广播的优势,即单个广播传输覆盖多个相邻接收器,并且(c)WMN节点上的剩余传输容量,受其附近现有业务流的基于intereference的约束。我们感兴趣的度量标准是可以允许进入网络的广播和多播流的总数,而不会导致度量标准的降低,例如数据包丢失和分发延迟。我们的离散事件模拟表明,将传输速率和剩余带宽都考虑在内的广播树构造启发式算法的性能优于那些没有的启发式算法。在我们的资源感知广播树构建工作的基础上,我们提出了一种资源感知组播树构建算法,该算法利用了多个链路层速率,无线广播优势和可用资源数量。仿真结果表明,该算法比基于修剪广播树或最短路径树的启发式算法性能更好。

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