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On the throughput performance of multirate IEEE 802.11 networks with variable-loaded stations: analysis, modeling, and a novel proportional fairness criterion

机译:关于具有可变负载站的多速率IEEE 802.11网络的吞吐性能:分析,建模和新颖的比例公平性准则

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摘要

This paper focuses on multirate IEEE 802.11 Wireless LAN employing the mandatory Distributed Coordination Function (DCF) option. Its aim is threefold. Upon starting from the multi-dimensional Markovian state transition model proposed by Malone et.al. for characterizing the behavior of the IEEE 802.11 protocol at the Medium Access Control layer, it presents an extension accounting for packet transmission failures due to channel errors. Second, it establishes the conditions under which a network constituted by N stations, each station transmitting with its own bit rate, Rd, and packet rate, ;B;s, can be assumed loaded. Finally, it proposes a modified Proportional Fairness (PF) criterion, suitable for mitigating the rate anomaly problem of multirate loaded IEEE 802.11 Wireless LANs, employing the mandatory DCF option. Compared to the widely adopted assumption of saturated network, the proposed fairness criterion can be applied to general loaded networks. The throughput allocation resulting from the proposed algorithm is able to greatly increase the aggregate throughput of the DCF, while ensuring fairness levels among the stations of the same order as the ones guaranteed by the classical PF criterion. Simulation results are presented for some sample scenarios, confirming the effectiveness of the proposed criterion for optimized throughput allocation.
机译:本文重点介绍采用强制性分布式协调功能(DCF)选项的多速率IEEE 802.11无线局域网。其目标是三方面的。从Malone等人提出的多维马尔可夫状态转移模型开始。为了在媒体访问控制层上表征IEEE 802.11协议的行为,它提出了一种扩展,以解决由于信道错误而导致的数据包传输失败。其次,它确定了由N个站点组成的网络的条件,每个站点以其自己的比特率Rd和分组速率BS传输,可以假定为已加载。最后,它提出了一种经修改的比例公平(PF)标准,适用于采用强制DCF选项的情况,该标准适用于缓解多速率负载的IEEE 802.11无线LAN的速率异常问题。与广泛采用的饱和网络假设相比,所提出的公平性标准可以应用于一般负载网络。由所提出的算法产生的吞吐量分配能够极大地增加DCF的总吞吐量,同时确保与经典PF准则所保证的站点数量级相同的站点之间的公平性水平。给出了一些示例场景的仿真结果,证实了所提出的优化吞吐量分配标准的有效性。

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