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Modeling TCP Reno performance: a simple model and its empirical validation

机译:为TCP Reno性能建模:一个简单的模型及其经验验证

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The steady-state performance of a bulk transfer TCP flow (i.e., a flow with a large amount of data to send, such as FTP transfers) may be characterized by the send rate, which is the amount of data sent by the sender in unit time. In this paper we develop a simple analytic characterization of the steady-state send rate as a function of loss rate and round trip time (RTT) for a bulk transfer TCP flow. Unlike the models of Lakshman and Madhow (see IEE/ACM Trans. Networking, vol.5, p.336-50, 1997), Mahdavi and Floyd (1997), Mathis, Semke, Mahdavi and Ott (see Comput. Commun. Rev., vol.27, no.3, 1997) and by by Ott et al., our model captures not only the behavior of the fast retransmit mechanism but also the effect of the time-out mechanism. Our measurements suggest that this latter behavior is important from a modeling perspective, as almost all of our TCP traces contained more time-out events than fast retransmit events. Our measurements demonstrate that our model is able to more accurately predict TCP send rate and is accurate over a wider range of loss rates. We also present a simple extension of our model to compute the throughput of a bulk transfer TCP flow, which is defined as the amount of data received by the receiver in unit time.
机译:批量传输TCP流(即,要发送大量数据的流,例如FTP传输)的稳态性能可以用发送速率来表征,该速率是发送方以单位发送的数据量时间。在本文中,我们针对批量传输TCP流开发了一种简单的分析方法,将稳态发送速率作为丢失率和往返时间(RTT)的函数进行分析。与Lakshman和Madhow的模型(请参阅IEE / ACM Trans。Networking,第5卷,第336-50页,1997年),Mahdavi和Floyd(1997年),Mathis,Semke,Madhavi和Ott的模型不同(请参见Comput。Commun。Rev. (第27卷,第3期,1997年)和由Ott等人撰写的模型不仅捕获了快速重传机制的行为,还捕获了超时机制的影响。我们的测量结果表明,从建模角度来看,后一种行为很重要,因为几乎所有TCP跟踪都包含比快速重传事件更多的超时事件。我们的测量表明,我们的模型能够更准确地预测TCP发送速率,并且在更大的丢失率范围内都是准确的。我们还对模型进行了简单扩展,以计算批量传输TCP流的吞吐量,该吞吐量定义为接收器在单位时间内接收到的数据量。

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