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Achieving high throughput and low delay by accurately regulating link queue length over mobile data network

机译:通过精确调整移动数据网络上的链路队列长度,实现高吞吐量和低延迟

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Knowledge of the queue length of the bottleneck link has many potential applications such as congestion control, traffic engineering, traffic policing, content adaptation, QoS monitoring and provisioning, etc. A recent work proposed a new Sum-of-Delay with Timestamp (SoD-TS) algorithm which can accurately estimate queue length in mobile networks with both bandwidth variations and uplink delay variations by exploiting the existing TCP Timestamp option. By making use of SoD-TS we developed a novel transport protocol - queue-length-aware TCP (TCP-QLA), that tackles the problem of bufferbloat to provide better QoS for applications requiring low end-to-end delay and/or high bandwidth utilization. Trace-driven simulation shows that compared to TCP CUBIC TCP QLA can reduce the RTT by a factor of 2.7 while still achieving over 97% bandwidth utilization. Moreover, TCP-QLA further reduces RTT by 50% compared to delay-based TCP such as FAST TCP and TCP Vegas.
机译:了解瓶颈链路的队列长度具有许多潜在的应用,例如拥塞控制,流量工程,流量监管,内容自适应,QoS监视和供应等。最近的工作提出了一种新的带有时间戳的延迟总和(SoD- TS)算法,可以通过利用现有的TCP时间戳选项来准确估计具有带宽变化和上行链路延迟变化的移动网络中的队列长度。通过使用SoD-TS,我们开发了一种新颖的传输协议-知道队列长度的TCP(TCP-QLA),该协议解决了缓冲膨胀问题,从而为需要低端到端延迟和/或高延迟的应用程序提供了更好的QoS。带宽利用率。跟踪驱动的仿真表明,与TCP CUBIC相比,TCP QLA可以将RTT降低2.7倍,同时仍可实现超过97%的带宽利用率。而且,与基于延迟的TCP(例如FAST TCP和TCP Vegas)相比,TCP-QLA进一步将RTT降低了50%。

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