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首页> 外文期刊>Internet of Things Journal, IEEE >Token-Based Adaptive MAC for a Two-Hop Internet-of-Things Enabled MANET
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Token-Based Adaptive MAC for a Two-Hop Internet-of-Things Enabled MANET

机译:启用了两跳物联网的MANET的基于令牌的自适应MAC

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摘要

In this paper, a distributed token-based adaptive medium access control (TA-MAC) scheme is proposed for a two-hop Internet of Things (IoT)-enabled mobile ad hoc network. In the TA-MAC, nodes are partitioned into different one-hop node groups, and a time division multiple access (TDMA)-based superframe structure is proposed to allocate different TDMA time durations to different node groups to overcome the hidden terminal problem. A probabilistic token passing scheme is devised to distributedly allocate time slots to nodes in each group for packet transmissions, forming different token rings. The distributed time slot allocation is adaptive to variations of the number of nodes in each token ring due to node movement. To optimize the medium access control (MAC) design, performance analytical models are presented in closed-form functions of both MAC parameters and network traffic load. Then, an average end-to-end delay minimization framework is established to derive the optimal MAC parameters under a certain network load condition. Analytical and simulation results demonstrate that, by adapting the MAC parameters to the varying network condition, the TA-MAC achieves consistently minimal average end-to-end delay, bounded delay for local transmissions, and high aggregate throughput. Further, the performance comparison with other MAC schemes shows the scalability of the proposed MAC in an IoT-based two-hop environment with an increasing number of nodes.
机译:在本文中,针对启用了两跳式物联网(IoT)的移动自组织网络,提出了一种基于令牌的分布式自适应媒体访问控制(TA-MAC)方案。在TA-MAC中,将节点划分为不同的一跳节点组,并提出了一种基于时分多址(TDMA)的超帧结构,将不同的TDMA持续时间分配给不同的节点组,以解决隐藏终端问题。设计了一种概率令牌传递方案,以将时隙分配给每个组中的节点以进行分组传输,从而形成不同的令牌环。由于节点的移动,分布式时隙分配适应于每个令牌环中的节点数量的变化。为了优化媒体访问控制(MAC)设计,在MAC参数和网络流量负载的封闭形式函数中提供了性能分析模型。然后,建立平均端到端延迟最小化框架,以在特定网络负载条件下得出最佳MAC参数。分析和仿真结果表明,通过使MAC参数适应变化的网络条件,TA-MAC可以始终保持最小的平均端到端延迟,本地传输的受限延迟和高总吞吐量。此外,与其他MAC方案的性能比较表明,在节点数量不断增加的基于IoT的两跳环境中,提出的MAC的可扩展性。

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