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Measurement and modelling of TCP downstream throughput dependence on SNR in an IEEE802.11b WLAN system

机译:IEEE802.11b WLAN系统中TCP下游吞吐量依赖性的测量与建模

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The dependence of TCP downstream throughput (TCPdownT) on signal to noise ratio (SNR) has been studied in this paper. Measurements were taken for multiple users in small offices, open corridors and free space environments using an infrastructure based IEEE 802.11b WLAN while transmitting different quality of service (QoS) traffic. Models able to predict TCPdownT with respect to SNR observed were developed and validated for different signal categories. We observed RMS errors of 0.938012 Mbps, 1.047012 Mbps, 0.65833 Mbps and 0.452927 Mbps for the general (all SNR) model, strong signals model, grey signals model and Weak signals model respectively which were much lower than that of similar models with which they were compared. Comparing our results with previous work on TCP upstream throughput showed that it is more accurate to investigate upstream and downstream throughput separately. Using our models, IEEE 802.11b WLAN installers will be able to predict the TCPdownT by simply measuring and monitoring only the received SNR which is already part of the network installation process.
机译:本文研究了TCP下游吞吐量(TCPDownt)对信噪比(SNR)的依赖性。使用基于基于IEEE 802.11b WLAN的小型办公室,开放走廊和可用空间环境中的多个用户在传输不同的服务质量(QoS)流量时,为多个用户进行测量。为不同的信号类别开发并验证了能够预测观察到SNR的TCPDownt的模型。我们观察了0.938012 Mbps,1.047012 Mbps,0.65833 Mbps和0.452927 Mbps的RMS误差,为一般(所有SNR)模型,强信号模型,灰色信号模型和弱信号模型分别远低于它们的类似型号比较的。比较我们的结果与以前的TCP上游吞吐量的工作表明,调查上游和下游吞吐量更准确。使用我们的模型,IEEE 802.11b WLAN安装程序将能够通过简单地测量和监视已接收的SNR来预测TCPDownt,该SNR已经是网络安装过程的一部分。

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