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Utilizing Multi-Hop Neighbor Information in Spectrum Allocation for Wireless Networks

机译:在无线网络频谱分配中利用多跳邻居信息

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Spectrum sharing is a crucial issue to the overall throughput performance of multi-hop wireless networks. Traditional distributed random Medium Access Control (MAC), such as IEEE 802.11, lacks of efficiency of spectrum usage, while centralized scheduling is not practical for large scale ad hoc networks. It is observed that for multi-hop wireless networks, it is hard to resolve the scheduling conflict, and most distributed algorithms consider the neighbors' traffic independent of each other and ignore the multi-hop nature of flows, leading to the spectrum wastage and inefficiency. By incorporating the multihop nature of flows, we propose a new distributed scheme based on IEEE 802.11 standard, namely "2-hop MAC". Nodes collect traffic dependency information as well as traffic demand information from neighbors and allocate spectrum distributedly with the knowledge of more accurate traffic demand of the nodes in the neighborhood. Moreover, we have also addressed the problem of the asymmetric neighborhood, which was ignored in most previous work. Finally, we introduce a new metric, namely, allocation inefficiency ratio (AIR), to evaluate the performance of distributed algorithms in multi-hop wireless networks. Extensive simulation study shows that our proposed scheme can significantly improve the network performance and spectrum efficiency.
机译:频谱共享对于多跳无线网络的整体吞吐性能至关重要。传统的分布式随机介质访问控制(MAC),例如IEEE 802.11,缺乏频谱使用效率,而集中式调度对于大规模自组织网络则不切实际。可以看出,对于多跳无线网络而言,很难解决调度冲突,并且大多数分布式算法都考虑邻居的流量彼此独立,而忽略了流的多跳性质,从而导致频谱浪费和效率低下。 。通过合并流的多跳性质,我们提出了一种基于IEEE 802.11标准的新的分布式方案,即“ 2-hop MAC”。节点从邻居那里收集流量依赖性信息以及流量需求信息,并在了解邻居节点更精确的流量需求的情况下分布式分配频谱。此外,我们还解决了非对称邻域的问题,该问题在以前的大多数工作中都被忽略。最后,我们引入了一种新的指标,即分配无效率(AIR),以评估多跳无线网络中分布式算法的性能。大量的仿真研究表明,我们提出的方案可以显着提高网络性能和频谱效率。

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