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Design and Analysis of a Multiscale Active Queue Management Scheme

机译:多尺度主动队列管理方案的设计与分析

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Since Internet is dominated by TCP-based applications, active queue management (AQM) is considered as an effective way for congestion control. However, most AQM schemes suffer obvious performance degradation with dynamic traffic. Extensive measurements found that Internet traffic is extremely bursty and possibly self-similar. We propose in this paper a new AQM scheme called multiscale controller (MSC) based on the understanding of traffic burstiness in multiple time scale. Different from most of other AQM schemes, MSC combines rate-based and queue-based control in two time scales. While the rate-based dropping on burst level (large time scales) determines the packet drop aggressiveness and is responsible for low and stable queuing delay, good robustness and responsiveness, the queue-based modulation of the packet drop probability on packet level (small time scales) will bring low loss and high throughput. Stability analysis is performed based on a fluid-flow model of the TCP/MSC congestion control system and simulation results show that MSC outperforms many of the current AQM schemes.
机译:由于Internet由基于TCP的应用程序控制,因此主动队列管理(AQM)被视为拥塞控制的有效方法。但是,大多数AQM方案会随着动态流量而明显降低性能。广泛的测量发现,互联网流量极度突发并且可能是自相似的。我们基于对多时标流量突发性的理解,在本文中提出了一种新的AQM方案,称为多尺度控制器(MSC)。与大多数其他AQM方案不同,MSC在两个时标中结合了基于速率的控制和基于队列的控制。虽然基于速率的突发级别丢弃(较大的时间尺度)决定了数据包丢弃的积极性,并导致了较低且稳定的排队延迟,良好的鲁棒性和响应能力,但基于队列的数据包级别丢弃概率(小时间)的调制秤)将带来低损耗和高吞吐量。基于TCP / MSC拥塞控制系统的流体模型进行稳定性分析,仿真结果表明,MSC优于许多当前的AQM方案。

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