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Analytical Modeling of TCP Dynamics in Infrastructure-Based IEEE 802.11 WLANs

机译:基于基础架构的IEEE 802.11 WLAN中的TCP动态分析模型

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摘要

IEEE 802.11 wireless local area network (WLAN) has become the prevailing solution for wireless Internet access while transport control protocol (TCP) is the dominant transport-layer protocol in the Internet. It is known that, in an infrastructure-based WLAN with multiple stations carrying long-lived TCP flows, the number of TCP stations that are actively contending to access the wireless channel remains very small. Hence, the aggregate TCP throughput is basically independent of the total number of TCP stations. This phenomenon is due to the closed-loop nature of TCP flow control and the bottleneck downlink (i.e., access point-to-station) transmissions in infrastructure-based WLANs. In this paper, we develop a comprehensive analytical model to study TCP dynamics in infrastructure-based 802.11 WLANs. We calculate the average number of active TCP stations and the aggregate TCP throughput using our model for given total number of TCP stations and the maximum TCP receive window size. We find out that the default minimum contention window sizes specified in the standards (i.e., 31 and 15 for 802.11b and 802.11a, respectively) are not optimal in terms of TCP throughput maximization. Via ns-2 simulation, we verify the correctness of our analytical model and study the effects of some of the simplifying assumptions employed in the model. Simulation results show that our model is reasonably accurate, particularly when the wireline delay is small and/or the packet loss rate is low.
机译:IEEE 802.11无线局域网(WLAN)已成为无线Internet访问的主流解决方案,而传输控制协议(TCP)是Internet中的主要传输层协议。众所周知,在具有多个承载长期TCP流的站点的基于基础结构的WLAN中,积极竞争访问无线信道的TCP站点的数量仍然很小。因此,总的TCP吞吐量基本上与TCP站的总数无关。这种现象是由于TCP流量控制的闭环性质和基于基础架构的WLAN中的瓶颈下行链路(即,接入点到站点)传输所致。在本文中,我们开发了一个全面的分析模型来研究基于基础架构的802.11 WLAN中的TCP动态。对于给定的TCP站总数和最大TCP接收窗口大小,我们使用模型来计算活动TCP站的平均数量和TCP的总吞吐量。我们发现,在标准中指定的默认最小竞争窗口大小(即802.11b和802.11a分别为31和15)在TCP吞吐量最大化方面不是最佳的。通过ns-2仿真,我们验证了分析模型的正确性,并研究了模型中采用的一些简化假设的影响。仿真结果表明,我们的模型相当准确,特别是当有线延迟较小和/或数据包丢失率较低时。

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