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Modeling the Effect of Transmission Errors on TCP Controlled Transfers over Infrastructure 802.11 Wireless LANs

机译:建模传输错误对基础架构802.11无线LAN上TCP控制的传输的影响

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There have been several studies on the performance of TCP controlled transfers over an infrastructure IEEE 802.11 WL AN, assuming perfect channel conditions. In this paper, we develop an analytical model for the throughput of TCP controlled file transfers over the IEEE 802.11 DCF with different packet error probabilities for the stations, accounting for the effect of packet drops on the TCP window. Our analysis proceeds by combining two models: one is an extension of the usual TCP-over-DCF model for an infrastructure WLAN, where the throughput of a station depends on the probability that the head-of-the-line packet at the Access Point belongs to that station; the second is a model for the TCP window process for connections with different drop probabilities. Iterative calculations between these models yields the head-of-the-line probabilities, and then, performance measures such as the throughputs and packet failure probabilities can be derived. We find that, due to MAC layer retransmissions, packet losses are rare even with high channel error probabilities and the stations obtain fair throughputs even when some of them have packet error probabilities as high as 0.1 or 0.2. For some restricted settings we are also able to model tail-drop loss at the AP. Although involving many approximations, the model captures the system behavior quite accurately, as compared with simulations.
机译:在完善的信道条件下,已经对基于基础架构IEEE 802.11 WL AN的TCP控制的传输性能进行了多项研究。在本文中,我们开发了一个解析模型,用于分析IEEE 802.11 DCF上TCP控制文件传输的吞吐量,这些数据包具有不同的站误包率,并考虑了丢包对TCP窗口的影响。我们的分析是通过结合两种模型进行的:一种是对基础设施WLAN的常规TCP-over-DCF模型的扩展,其中站点的吞吐量取决于接入点的线头数据包的概率属于那个站;第二个模型是用于TCP窗口进程的模型,用于具有不同丢弃概率的连接。这些模型之间的迭代计算产生了线头概率,然后可以得出性能度量,例如吞吐量和数据包故障概率。我们发现,由于MAC层的重传,即使具有较高的信道错误概率,也不会出现丢包的情况,即使这些站中的某些分组错误概率高达0.1或0.2,这些站也可以获得合理的吞吐量。对于某些受限设置,我们还能够对AP的尾部丢失进行建模。尽管涉及许多近似值,但是与仿真相比,该模型非常准确地捕获了系统行为。

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