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An accurate closed-form formula for the throughput of long-lived TCP connections in IEEE 802.11 WLANs

机译:IEEE 802.11 WLAN中长寿命TCP连接的吞吐量的精确封闭格式公式

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There is a vast literature on the performance modeling of the 802.11 MAC protocol, but the interplay between the TCP dynamics and the self-regulating behavior of the 802.11 CSMA/CA access method has not been sufficiently investigated. In addition, it has been observed that TCP stations in a WLAN are sporadically active due to the TCP flow control mechanisms. This makes traditional saturated models of the network capacity of 802.11 WLANs not very accurate. We presented a rigorous analytical model to calculate the distribution of the number of active TCP stations in a WLAN with multiple long-lived TCP flows [R. Bruno, M. Conti, E. Gregori, Performance modelling and measurements of TCP transfer throughput in 802.11-based WLAN, in: Proceedings of the IEEE MsWiM 2006, Torremolinos, Malaga, Spain, 2006, pp. 4-11, [1]]. Starting from this analysis, in this paper we derive a simple but accurate closed-form expression of the per-connection TCP throughout as a function of the average duration of collisions, the average backoff period and the TCP packet size. We validate this formula through performance tests carried out on a real WLAN. Then, we use our model to mathematically study the optimal minimum contention window size to maximize the TCP throughput. Our analytical results indicate that the initial window size specified in the 802.116 standard is about two times larger than the optimal one. However, we also show that the TCP throughput performance is not very sensitive to changes of the minimum contention window size, and that the TCP flows significantly underutilize the channel bandwidth also in the optimal MAC operating state.
机译:关于802.11 MAC协议的性能建模方面有大量文献,但是尚未充分研究TCP动态与802.11 CSMA / CA访问方法的自调节行为之间的相互作用。另外,已经观察到,由于TCP流控制机制,WLAN中的TCP站偶尔地活动。这使得802.11 WLAN的网络容量的传统饱和模型不太准确。我们提出了一个严格的分析模型来计算具有多个长期TCP流的WLAN中活动TCP站数量的分布[R. Bruno,M. Conti,E。Gregori,基于802.11的WLAN中的TCP传输吞吐量的性能建模和测量,在:IEEE MsWiM 2006的会议记录,托雷莫里诺斯,西班牙马拉加,2006年,第4-11页,[1] ]。从该分析开始,在本文中,我们得出了每个连接TCP的简单但准确的闭合形式表达式,该表达式始终是平均冲突持续时间,平均退避周期和TCP数据包大小的函数。我们通过在真实WLAN上进行的性能测试来验证此公式。然后,我们使用我们的模型对数学上最佳的最小竞争窗口大小进行研究,以最大程度地提高TCP吞吐量。我们的分析结果表明,在802.116标准中指定的初始窗口大小大约是最佳窗口大小的两倍。但是,我们还表明,TCP吞吐量性能对最小争用窗口大小的变化不是很敏感,并且即使在最佳MAC工作状态下,TCP流量也严重利用信道带宽不足。

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