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Compound TCP with Random Losses

机译:具有随机损失的复合TCP

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We analyze the performance of a single, long-lived, Compound TCP (CTCP) connection in the presence of random packet losses. CTCP is a new version of TCP implemented in Microsoft Windows to improve the performance on networks with large bandwidth delay-products. We derive a Markovian model for the CTCP sending window and compute the steady state distribution of the window and the average throughput of a CTCP connection. We observe that the previous approximation, using a "typical cycle," underestimates the average window and its variance while the Markovian model gives more accurate results. We use our model to compare CTCP and TCP Reno. We notice that CTCP gives always a throughput equal or greater than Reno, while relative performance in terms of jitter depends on the specific network scenario: CTCP generates more jitter for moderate-high drop rate values, while the opposite is true for low drop rate values.
机译:我们分析了随机数据包丢失情况下单个,长寿命的复合TCP(CTCP)连接的性能。 CTCP是在Microsoft Windows中实现的TCP的新版本,旨在提高带宽延迟较大的产品在网络上的性能。我们导出CTCP发送窗口的马尔可夫模型,并计算该窗口的稳态分布和CTCP连接的平均吞吐量。我们观察到,使用“典型周期”进行的先前逼近低估了平均窗口及其方差,而马尔可夫模型给出了更准确的结果。我们使用我们的模型比较CTCP和TCP Reno。我们注意到,CTCP始终提供等于或大于Reno的吞吐量,而相对于抖动的性能取决于特定的网络情况:对于中等高的丢包率值,CTCP产生更多的抖动,而对于低丢包率值,则相反。

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