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Randomly Ranked Mini Slots for Fair and Efficient Medium Access Control in Ad Hoc Networks

机译:用于Ad Hoc网络中公平有效的媒体访问控制的随机排列迷你插槽

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摘要

Ad hoc networks offer infrastructure-free operation, where no entity can provide reliable coordination among nodes. Medium Access Control (MAC) protocols in such a network must overcome the inherent unreliability of the network and provide high throughput and adequate fairness to the different flows of traffic. In this paper, we propose a MAC protocol that can achieve an excellent balance between throughput and fairness. Our protocol has two versions: Randomly Ranked Mini Slots (RRMS) utilizes control-message handshakes similar to IEEE 802.11. Randomly Ranked Mini Slots with Busy Tone (RRMS-BT) is the better performer of the two, but requires a receiver busy tone. The protocol makes use of granule time slots and sequences of pseudorandom numbers to maximize spatial reuse and divide the throughput fairly among nodes. We demonstrate the performance of this protocol using simulation with fixed and random topologies and show that these results are robust to difficult network configurations and unsynchronized clocks. We further develop novel metrics of long-term and short-term fairness for rigorous performance evaluation. Our simulation results include a detailed comparison between the proposed protocol and existing protocols that have been shown to excel in terms of throughput or fairness.
机译:Ad hoc网络提供无基础架构的操作,没有实体可以在节点之间提供可靠的协调。这种网络中的媒体访问控制(MAC)协议必须克服网络固有的不可靠性,并为不同的业务流提供高吞吐量和足够的公平性。在本文中,我们提出了一种MAC协议,可以在吞吐量和公平性之间实现出色的平衡。我们的协议有两个版本:随机排列的微型插槽(RRMS)利用类似于IEEE 802.11的控制消息握手。带有忙音的随机排列小时隙(RRMS-BT)是两者中性能最好的,但是需要接收者忙音。该协议利用粒状时隙和伪随机数序列来最大化空间复用并在节点之间公平地划分吞吐量。我们使用固定和随机拓扑的仿真演示了该协议的性能,并表明这些结果对于困难的网络配置和不同步的时钟具有鲁棒性。我们进一步开发了长期和短期公平性的新颖指标,以进行严格的绩效评估。我们的仿真结果包括拟议协议与现有协议之间的详细比较,这些协议在吞吐量或公平性方面均表现出色。

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