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Modeling short-lived TCP connections with open multiclass queuing networks

机译:使用开放式多类排队网络为短暂的TCP连接建模

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In this paper we develop an open multiclass queuing network model to describe the behavior of short-lived TCP connections sharing a common IP network. The queuing network model is paired with a simple model of the IP network, and the two models are solved through an iterative procedure. The combined models need as inputs only the primitive network parameters, and they produce estimates of the packet loss probability, the round trip time, the TCP connection throughput, and of the average TCP connection completion time (that is, of the average time necessary to transfer a file with given size over a TCP connection). We derive models for both TCP-Tahoe and TCP-NewReno. The Tahoe model is presented in detail, while the NewReno model is presented describing differences with respect to Tahoe. Results are shown for both models. The analytical performance predictions are validated against detailed simulation experiments in realistic networking scenarios, proving that the proposed modeling approach is accurate.
机译:在本文中,我们开发了一个开放的多类排队网络模型,以描述共享公共IP网络的短暂TCP连接的行为。排队网络模型与IP网络的简单模型配对,并且两个模型通过迭代过程求​​解。组合模型仅需要输入原始网络参数,即可得出丢包概率,往返时间,TCP连接吞吐量以及平均TCP连接完成时间(即通过TCP连接传输给定大小的文件)。我们导出TCP-Tahoe和TCP-NewReno的模型。详细介绍了Tahoe模型,同时介绍了NewReno模型,该模型描述了关于Tahoe的差异。显示了两个模型的结果。在实际的网络场景中,针对详细的模拟实验对分析性能预测进行了验证,证明了所提出的建模方法是准确的。

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