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TCP-GT: A New Approach to Congestion Control Based on Goodput and Throughput

机译:TCP-GT:一种基于吞吐量和吞吐量的拥塞控制新方法

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摘要

A plethora of transmission control protocol (TCP) congestion control algorithms have been devoted to achieving the ultimate goal of high link utilization and fair bandwidth sharing in high bandwidth-delay product (HBDP) networks. We present a new insight into the TCP congestion control problem; in particular an end-to-end delay-based approach for an HBDP network. Our main focus is to design an end-to-end mechanism that can achieve the goal without the assistance of any network feedback. Without a router's aid in notifying the network load factor of a bottleneck link, we utilize goodput and throughput values in order to estimate the load factor. The obtained load factor affects the congestion window adjustment. The new protocol, which is called TCP-goodput and throughput (GT), adopts the carefully designed inversely-proportional increase multiplicative decrease window control policy. Our protocol is stable and efficient regardless of the link capacity, the number of flows, and the round-trip delay. Simulation results show that TCP-GT achieves high utilization, good fairness, small standing queue size, and no packet loss in an HBDP environment.
机译:大量的传输控制协议(TCP)拥塞控制算法已致力于实现高带宽延迟产品(HBDP)网络中高链路利用率和公平带宽共享的最终目标。我们对TCP拥塞控制问题提出了新的见解。特别是针对HBDP网络的基于端到端延迟的方法。我们的主要重点是设计一种无需任何网络反馈即可实现目标的端到端机制。在没有路由器帮助通知瓶颈链路的网络负载率的情况下,我们利用吞吐量和吞吐量值来估计负载率。所获得的负载因子会影响拥塞窗口的调整。新协议称为TCP吞吐量和吞吐量(GT),它采用精心设计的反比例增加乘以减少窗口控制策略。无论链路容量,流数和往返延迟如何,我们的协议都是稳定高效的。仿真结果表明,在HBDP环境下,TCP-GT的利用率高,公平性好,站立队列小,无丢包。

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