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WINTRAC: a TCP window adjustment scheme for bandwidth management

机译:WINTRAC:用于带宽管理的TCP窗口调整方案

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In TCP congestion control as well as error recovery are implemented by a sliding window. The dynamics of TCP specif- ically, a mismatch between the TCP window and the bandwidth-delay product of the network can sometimes cause the network switches or routers to accumulate large queues, resulting in buffer overflows, reduced throughput, unfairness and underutilization. It is generally accepted that there is a limit to how much control can be accomplished from the congestion control mechanisms in the end systems. Some mechanisms are needed in the intermediate network elements to complement the endpoint congestion avoidance mechanisms. We describe in this paper, a new TCP rate control scheme based on a sim- ple recursive algorithm. The idea behind the algorithm is to match the offered network load to the available resources by modifying at an intermediate network element, the receiver's advertised window in TCP acknowledgments returning to the source. We show through simulations that the scheme can efficiently control TCP traffic to limit queue buildups and buffer requirements at the network nodes, resulting in significant improvements in delay, packet loss rates, fairness in the distribution of the maximum achievable window size, and link utilization.
机译:在TCP中,拥塞控制和错误恢复是通过滑动窗口实现的。特别是TCP的动态变化,TCP窗口和网络的带宽延迟乘积之间的不匹配有时会导致网络交换机或路由器积累大量队列,从而导致缓冲区溢出,吞吐量降低,不公平和利用率不足。人们普遍认为,可以通过终端系统中的拥塞控制机制来完成多少控制是有限制的。在中间网元中需要一些机制来补充端点拥塞避免机制。我们在本文中描述了一种基于简单递归算法的新型TCP速率控制方案。该算法背后的思想是通过在中间网络元素处进行修改,使提供的网络负载与可用资源相匹配,TCP确认中的接收者通告的窗口返回到源。我们通过仿真显示,该方案可以有效地控制TCP流量,以限制网络节点处的队列建立和缓冲区需求,从而显着改善延迟,数据包丢失率,最大可达到的窗口大小分配的公平性和链接利用率。

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