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MAC in Motion: Impact of Mobility on the MAC of Drive-Thru Internet

机译:移动中的MAC:移动性对得来速互联网MAC的影响

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摘要

The pervasive adoption of IEEE 802.11 radios in the past decade has made possible for the easy Internet access from a vehicle, notably drive-thru Internet. Originally designed for the static indoor applications, the throughput performance of IEEE 802.11 in the outdoor vehicular environment is, however, still unclear especially when a large number of fast-moving users transmitting simultaneously. In this paper, we investigate the performance of IEEE 802.11 DCF in the highly mobile vehicular networks. We first propose a simple yet accurate analytical model to evaluate the throughput of DCF in the large scale drive-thru Internet scenario. Our model incorporates the high-node mobility with the modeling of DCF and unveils the impacts of mobility (characterized by node velocity and moving directions) on the resultant throughput. Based on the model, we show that the throughput of DCF will be reduced with increasing node velocity due to the mismatch between the MAC and the transient high-throughput connectivity of vehicles. We then propose several enhancement schemes to adaptively adjust the MAC in tune with the node mobility. Extensive simulations are carried out to validate the accuracy of the developed analytical model and the effectiveness of the proposed enhancement schemes.
机译:在过去的十年中,IEEE 802.11无线电的广泛采用使从车辆(尤其是穿越式互联网)轻松访问Internet成为可能。然而,最初为静态室内应用而设计的IEEE 802.11在室外车辆环境中的吞吐性能仍然不清楚,尤其是当大量快速移动的用户同时进行传输时。在本文中,我们研究了在高度移动的车载网络中IEEE 802.11 DCF的性能。我们首先提出一个简单而准确的分析模型,以评估大规模直通互联网情况下DCF的吞吐量。我们的模型将高节点移动性与DCF建模相结合,并揭示了移动性(以节点速度和移动方向为特征)对最终吞吐量的影响。基于该模型,我们表明,由于MAC和车辆的瞬态高通量连通性之间的不匹配,DCF的吞吐量将随着节点速度的增加而降低。然后,我们提出了几种增强方案,以根据节点的移动性来自适应地调整MAC。进行了广泛的仿真,以验证所开发的分析模型的准确性以及所提出的增强方案的有效性。

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