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Performance modelling and measurements of TCP transfer throughput in 802.11-based WLAN

机译:基于802.11的WLAN的TCP转移吞吐量的性能建模与测量

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The growing popularity of the 802.11 standard for building local wireless networks has generated an extensive literature on the performance modelling of its MAC protocol. However, most of the available studies focus on the throughput analysis in saturation conditions, while very little has been done on investigating the interactions between the 802.11 MAC protocol and closed-loop transport protocols such as TCP. This paper addresses this issue by developing an analytical model to compute the stationary probability distribution of the number of backlogged nodes in a WLAN in the presence of persistent TCP-controlled download and upload data transfers, and embedding the network backlog distribution in the MAC protocol modelling. A large set of experiments conducted in a real network validates the model correctness for a wide range of configurations. A particular emphasis is devoted to investigate and explain the TCP fairness characteristics. Our analytical model and the supporting experimental outcomes demonstrate that using default settings for the capacity of devices' output queues provides a fair allocation of channel bandwidth to the TCP connections, independently of the number of downstream and upstream flows. Furthermore, we show that the TCP total throughput does not degrade by increasing the number of wireless stations.
机译:建立本地无线网络的802.11标准的越来越受欢迎在其MAC协议的性能建模上产生了广泛的文献。然而,大多数可用的研究都关注饱和条件的吞吐量分析,而在研究802.11 MAC协议和闭环传输协议(如TCP)之间的相互作用也很少完成。本文通过开发分析模型来解决持久TCP控制下载和上载数据传输的存在,以计算WLAN中积压节点数量的静止概率分布,并将网络积压分布嵌入MAC协议建模中的静止概率分布。在真实网络中进行的大量实验验证了各种配置的模型正确性。特别强调调查和解释TCP公平特征。我们的分析模型和支持实验结果表明,使用设备输出队列的容量的默认设置提供了对TCP连接的公平分配,独立于下游和上游流量。此外,我们表明TCP总吞吐量通过增加无线站的数量来降低。

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