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Scalable TCP congestion control

机译:可扩展的TCP拥塞控制

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摘要

The packet losses imposed by IP networks can cause long and erratic recovery delays, since senders must often use conservative loss detection and retransmission mechanisms. This paper proposes a model to explain and predict loss rates for TCP traffic. Based on that model, the paper describes a new router buffering algorithm, flow-proportional queuing (FPQ), that handles heavy TCP loads without imposing high loss rates. FPQ controls TCP by varying the router's queue length in proportion to the number of active TCP connections. Simulation results show that FPQ produces the same average transfer delays as existing schemes, but makes the delays more predictable and fairer.
机译:由于发送方必须经常使用保守的丢失检测和重传机制,因此IP网络造成的数据包丢失会导致漫长而不稳定的恢复延迟。本文提出了一个模型来解释和预测TCP流量的丢失率。在该模型的基础上,本文描述了一种新的路由器缓冲算法,即流量比例排队(FPQ),该算法可处理沉重的TCP负载而不会造成高丢失率。 FPQ通过根据活动TCP连接的数量改变路由器的队列长度来控制TCP。仿真结果表明,FPQ产生与现有方案相同的平均传输延迟,但使延迟更可预测和更公平。

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