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Congestion-aware channel assignment for multi-channel wireless mesh networks

机译:多通道无线网状网络的拥塞感知通道分配

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In this paper, we propose a distributed congestion-aware channel assignment (DCACA) algorithm for multi-channel wireless mesh networks (MC-WMNs). The frequency channels are assigned according to the congestion measures which indicate the congestion status at each link. Depending on the selected congestion measure (e.g., queueing delay, packet loss probability, and differential backlog), various design objectives can be achieved. Our proposed distributed algorithm is simple to implement as it only requires each node to perform a local search. Unlike most of the previous channel assignment schemes, our proposed algorithm assigns not only the non-overlapped (i.e., orthogonal) frequency channels, but also the partially-overlapped channels. In this regard, we introduce the channel overlapping and mutual interference matrices which model the frequency overlapping among different channels. Simulation results show that in the presence of elastic traffic (e.g., TCP Vegas or TCP Reno) sources, our proposed DCACA algorithm increases the aggregate throughput and also decreases the average packet round-trip compared with the previously proposed Load-Aware channel assignment algorithm. Furthermore, in a congested IEEE 802.11b network setting, compared with the use of three non-overlapped channels, the aggregate network throughput can further be increased by 25% and the average round-trip time can be reduced by more than one half when all the 11 partially-overlapped channels are used.
机译:在本文中,我们提出了一种用于多信道无线网状网络(MC-WMN)的分布式拥塞感知信道分配(DCACA)算法。根据指示每个链路上的拥塞状态的拥塞度量来分配频率信道。取决于所选的拥塞度量(例如,排队延迟,分组丢失概率和差分积压),可以实现各种设计目标。我们提出的分布式算法很容易实现,因为它只需要每个节点执行本地搜索即可。与大多数以前的信道分配方案不同,我们提出的算法不仅分配非重叠(即正交)的频道,而且分配部分重叠的信道。在这方面,我们介绍了信道重叠和相互干扰矩阵,它们模拟了不同信道之间的频率重叠。仿真结果表明,在存在弹性流量(例如TCP Vegas或TCP Reno)源的情况下,与先前提出的负载感知信道分配算法相比,我们提出的DCACA算法增加了总吞吐量,并且还降低了平均数据包往返次数。此外,在拥挤的IEEE 802.11b网络设置中,与使用三个不重叠的信道相比,总的网络吞吐量可以进一步提高25%,并且平均往返时间可以减少一半以上。使用了11个部分重叠的通道。

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