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On the performance of ad hoc wireless LANs: A practical queuing theoretic model

机译:关于临时无线局域网的性能:实用的排队理论模型

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摘要

In this paper, two Markov chain queuing models have been developed to obtain closed-form solutions for packet delay and packet throughput distributions in a real-time wireless communication environment using IEEE 802.11 DCF. An M/G/1/K queuing model is incorporated in both models. In the first model results are based on arbitrary contention conditions, namely, collision probabilities, transmission probabilities and contention window sizes vary arbitrarily among nodes contending for channel access. In the second model, however, the contention condition is limited by the assumption that collision probabilities remain constant among contending nodes. Results are presented for the fully-connected case. Two models are compared and validated via simulation with statistical analysis. The main contributions are the analysis of DCF and the foundation for the sensitivity analysis.
机译:本文中,已经开发了两个马尔可夫链排队模型,以在使用IEEE 802.11 DCF的实时无线通信环境中获得用于数据包延迟和数据包吞吐量分布的封闭式解决方案。 M / G / 1 / K排队模型被合并到两个模型中。在第一模型中,结果基于任意竞争条件,即,冲突概率,传输概率和竞争窗口大小在争用信道访问的节点之间任意变化。但是,在第二个模型中,竞争条件受到以下假设的限制:冲突概率在竞争节点之间保持恒定。给出了全连接案例的结果。通过仿真和统计分析比较和验证了两个模型。主要贡献是DCF的分析和灵敏度分析的基础。

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