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The performance of TCP/IP for networks with high bandwidth-delay products and random loss

机译:具有高带宽延迟乘积和随机丢失的网络的TCP / IP性能

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This paper examines the performance of TCP/IP, the Internet data transport protocol, over wide-area networks (WANs) in which data traffic could coexist with real-time traffic such as voice and video. Specifically, we attempt to develop a basic understanding, using analysis and simulation, of the properties of TCP/IP in a regime where: (1) the bandwidth-delay product of the network is high compared to the buffering in the network and (2) packets may incur random loss (e.g., due to transient congestion caused by fluctuations in real-time traffic, or wireless links in the path of the connection). The following key results are obtained. First, random loss leads to significant throughput deterioration when the product of the loss probability and the square of the bandwidth-delay product is larger than one. Second, for multiple connections sharing a bottleneck link, TCP is grossly unfair toward connections with higher round-trip delays. This means that a simple first in first out (FIFO) queueing discipline might not suffice for data traffic in WANs. Finally, while the Reno version of TCP produces less bursty traffic than the original Tahoe version, it is less robust than the latter when successive losses are closely spaced. We conclude by indicating modifications that may be required both at the transport and network layers to provide good end-to-end performance over high-speed WANs.
机译:本文研究了TCP / IP(Internet数据传输协议)在广域网(WAN)上的性能,在广域网中,数据流量可以与语音和视频等实时流量共存。具体而言,我们尝试通过分析和模拟对以下情况下的TCP / IP属性建立基本的了解:(1)与网络中的缓冲相比,网络的带宽延迟乘积高;(2)数据包可能会导致随机丢失(例如,由于实时流量波动或连接路径中的无线链路引起的瞬时拥塞)。获得以下关键结果。首先,当丢失概率与带宽延迟乘积的平方的乘积大于1时,随机丢失会导致吞吐量显着下降。其次,对于共享瓶颈链路的多个连接,TCP对于往返延迟较高的连接非常不公平。这意味着,简单的先进先出(FIFO)排队规则可能不足以满足WAN中的数据流量。最终,虽然Reno版本的TCP产生的突发流量少于原始Tahoe版本,但当连续丢失的距离很近时,它的健壮性比原始Tahoe版本弱。最后,我们指出了在传输层和网络层都可能需要进行的修改,以在高速WAN上提供良好的端到端性能。

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