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Analytical modeling of fast retransmission and recovery in TCP-RENO

机译:TCP-RENO中快速重传和恢复的分析模型

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This paper presents an analytical model to analyze the characteristics of fast retransmission and recovery when packets are lost in a TCP/IP network. In the model, we consider multiple packets that may be lost in a TCP congestion window, which makes this analysis technically different from the previous models as described in N. Caldwell et al. (2000), J. Padhye et al. (2000), B. Sikdar et al. (2003) and B. Sikdar et al. (2001). One of the significant observation revealed by this paper is that whether or not the lost packets can be fast retransmitted at the (y+1)-th RTT (round-trip time) round simply depends on N,[y], representing the number of packets followed by the first lost packet and were successfully received at receiver at th y-th RTT round. For clarification, the analytical model consists of two cases. The first case assumes that N,[y] is greater than or equal to a threshold k (the number of duplicate acknowledgments), while the second case assumes that N,[y] is less than the threshold k. From the analyses, we have found out that there are certain necessary conditions for the occurrence of fast retransmission, and we have derived an upper bound of the number of lost packets to be successfully recovered using the fast retransmission algorithm.
机译:本文提出了一种分析模型,用于分析TCP / IP网络中丢包时的快速重传和恢复特性。在该模型中,我们考虑了可能在TCP拥塞窗口中丢失的多个数据包,这使得该分析在技术上与N. Caldwell等人所述的先前模型有所不同。 (2000),J。Padhye等。 (2000),B。Sikdar等。 (2003)和B. Sikdar等。 (2001)。本文揭示的一项重要发现是,丢失的数据包是否可以在第(y + 1)个RTT(往返时间)回合中快速重传,仅取决于代表数目的N,[y]。的数据包,然后是第一个丢失的数据包,并在第RTT轮次成功在接收方接收到。为了澄清起见,分析模型包括两种情况。第一种情况假定N,[y]大于或等于阈值k(重复确认的数量),而第二种情况假定N,[y]小于阈值k。从分析中我们发现,发生快速重传存在某些必要条件,并且我们得出了使用快速重传算法成功恢复的丢失数据包数量的上限。

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