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Distributed Routing Based on Minimum End to End Delay for OFDMA Backhaul Mobile Mesh Networks

机译:OFDMA回程移动网状网基于最小端到端时延的分布式路由

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In this paper, an orthogonal frequency division multiple access (OFDMA)-based minimum end to end delay (MED) distributed routing scheme for mobile backhaul wireless mesh networks is proposed. The proposed scheme selects routing paths based on OFDMA subcarrier synchronization control, subcarrier availability, and delay. In the proposed scheme, OFDMA is used to transmit frames between mesh routers using type-I hybrid automatic repeat request over multipath Rayleigh fading channels. Compared with other distributed routing algorithms, such as most forward within radius R, farthest neighbor routing, nearest neighbor routing, and nearest with forwarding progress, simulation results show that the proposed MED routing can reduce end-to-end delay and support highly reliable routing using only local information of neighbor nodes.
机译:本文提出了一种基于正交频分多址(OFDMA)的移动回程无线网状网络最小端到端延迟(MED)分布式路由方案。所提出的方案基于OFDMA子载波同步控制,子载波可用性和延迟来选择路由路径。在提出的方案中,OFDMA用于在多径瑞利衰落信道上使用I型混合自动重传请求在网状路由器之间传输帧。与其他分布式路由算法(例如半径R内的最远转发,最远邻居路由,最近邻居路由以及最接近转发进度)相比,仿真结果表明,提出的MED路由可以减少端到端时延并支持高度可靠的路由仅使用邻居节点的本地信息。

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