简单有效的多速率Ad-Hoc MESH网络载波感知自适应

Hui Ma, Sumit Roy
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引用次数: 12

摘要

基于调优物理载波阈值的自适应物理载波感知(PCS)已被证明是提高聚合网络吞吐量的有效机制。然而,早期的工作假设了整个网络的单一链路速率和一个共同的PCS阈值,这适用于具有恒定链路(1跳)距离的节点的规则二维晶格网格。在ad-hoc网络拓扑中,1跳链路距离变化很大,单个PCS阈值不再适用。由于IEEE 802.11 a/b/g网络在任何链路上提供多种数据速率,因此,为了实现ad-hoc网络的最佳总吞吐量,需要联合调整链路速率和PCS阈值。在这项工作中,我们首先为上述优化提出了一个简单而有效的原则。接下来,我们使用这些公式提供的直觉来建议OPNET模拟中的运行时自适应解决方案。我们将自己限制在一维随机线性网络中,主要是为了通过模拟来证实分析,并将其他拓扑的结果推迟到未来的工作中
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Simple and Effective Carrier Sensing Adaptation for Multi Rate Ad-Hoc MESH Networks
Adaptive physical carrier sensing (PCS) based on tuning the PCS threshold has been shown to be an effective mechanism for improving aggregate network throughput. However, earlier work assumed a single link rate and a common PCS threshold for the entire network, as appropriate for a regular 2-D lattice grid of nodes with constant link (1-hop) distances. In an ad-hoc network topology, the 1-hop link distances vary significantly and a single PCS threshold is no longer suitable. Because IEEE 802.11 a/b/g networks provide multiple data rates over any link, joint tuning of the link rate and PCS threshold is thus desirable for achieving optimal aggregate throughput for ad-hoc networks. In this work, we first propose a simple yet effective principle for the above optimization. Next, we use the intuition offered by these formulations to suggest run-time adaptive solutions in OPNET simulations. We restrict ourselves to 1-dimensional random linear networks primarily to corroborate analysis with simulations and defer results with other topologies for future work
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