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Adaptive Aggregated Aggressiveness Control on Parallel TCP Flows Using Competition Detection

机译:使用竞争检测的并行TCP流动的自适应聚合攻击性控制

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We present a competition detection mechanism for parallel TCP flows and use this to propose a new parallel TCP congestion control scheme called Adaptive TCP-P (A-TCP-P). A-TCP-P automatically controls the aggregated aggressiveness of parallel TCP flows to fairly share network bandwidth with single TCP flows independently from the number of the parallel TCP flows while effectively utilizing available bandwidth when it does not detect competition. A-TCP-P realizes this by adaptively adjusting the aggregated aggressiveness of parallel TCP flows according to network situations in a self-managed way. We implement A-TCP-P as a part of Linux kernel and the experimental results show that the proposed parallel TCP scheme improves per-host fairness and effectively utilize available bandwidth with reduced packet loss when it does not detect competing TCP flows from other hosts.
机译:我们提出了一个平行TCP流的竞争检测机制,并用它来提出一种名为Adaptive TCP-P(A-TCP-P)的新并行TCP拥塞控制方案。 A-TCP-P自动控制并行TCP流量的聚合攻击性,通过单个TCP流量,单个TCP流量独立于并行TCP流量的流量,同时在没有检测到竞争时有效利用可用带宽。 A-TCP-P通过以自动管理方式自适应地调整并行TCP流的聚合攻击性来实现这一点。我们将A-TCP-P作为Linux内核的一部分,实验结果表明,所提出的并行TCP方案可提高每主机公平性,并有效地利用可用带宽,并且当它没有检测到其他主机的竞争中的TCP流量时,可以减少丢包。

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