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Design and Analysis of a Stable Queue Control Scheme for the Internet

机译:互联网稳定队列控制方案的设计与分析

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The recently proposed Active Queue Management (AQM) is an effective method used in Internet routers for congestion control, and to achieve a tradeoff between link utilization and delay. The de facto standard, the Random Early Detection (RED) AQM scheme, and most of its variants use average queue length as a congestion indicator to trigger packet dropping. In this paper, we propose a novel proportional and differential RED algorithm, called NPDRED, as an extension of RED. NPD-RED is based on a self-tuning Proportional and Differential controller, which not only considers the instantaneous queue length at the current time point, but also takes into consideration the ratio of the current differential error signal to the buffer size. Furthermore, we give theoretical analysis of the system stability and give guidelines for the selection of feedback gains for the TCP/RED system to stabilize the instantaneous queue length at a desirable level. Extensive simulations have been conducted with ns2. The simulation results have demonstrated that the proposed NPD-RED algorithm outperforms the existing AQM schemes in terms of average queue length,average throughput, and stability.
机译:最近提出的Active队列管理(AQM)是互联网路由器中用于拥塞控制的有效方法,并在链接利用率和延迟之间实现权衡。事实上标准,随机早期检测(红色)AQM方案,以及其大部分变体使用平均队列长度作为触发数据包丢弃的拥塞指示器。在本文中,我们提出了一种新的比例和差分红算法,称为npdred,作为红色的延伸。 NPD-RED基于自调谐比例和差分控制器,其不仅考虑当前时间点处的瞬时队列长度,而且还考虑了当前差分误差信号与缓冲尺寸的比率。此外,我们对系统稳定性提供了理论分析,并为TCP /红色系统选择反馈增益提供指导方针,以在理想的水平下稳定瞬时队列长度。已经使用NS2进行了广泛的模拟。仿真结果表明,所提出的NPD-RED算法在平均队列长度,平均吞吐量和稳定性方面优于现有的AQM方案。

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