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Distributed max-min flow control for multi-rate overlay multicast

机译:多速率覆盖组播的分布式最大-最小流控制

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摘要

We present a distributed algorithm to compute bandwidth max-min fair rates in an overlay multicast network supporting multi-rate data delivery. The proposed algorithm is scalable in that it does not require each logical link to maintain the saturation status of all sessions and virtual sessions traveling through it, stable in that it converges asymptotically to the desired equilibrium satisfying the minimum plus max-min fairness even in the presence of heterogeneous round-trip delays, and has explicit link buffer control in that the buffer occupancy of every bottlenecked link in the network asymptotically converges to the pre-defined value. The algorithm is based on PI (proportional integral) control in the feedback control theory and by appealing to the Nyquist stability criterion, a usable stability condition is derived in the presence of sources with heterogeneous round-trip delays. In addition, we propose an efficient feedback consolidation algorithm which is computationally simpler than its hard-synchronization based counterpart and eliminates unnecessary consolidation delay by preventing it from awaiting backward control packets that do not directly contribute to the session rate. Through simulations we further verify the analytical results and the performance of the proposed multi-rate multicast flow control scheme based on these two algorithms.
机译:我们提出一种分布式算法来计算支持多速率数据传递的覆盖多播网络中的带宽最大-最小公平速率。所提出的算法是可扩展的,因为它不需要每个逻辑链路来维持通过它的所有会话和虚拟会话的饱和状态,其稳定之处在于,即使在网络中,它渐近地收敛到满足最小和最大-最小公平性的期望平衡。异构往返延迟的存在,并且具有显式的链路缓冲区控制,因为网络中每个瓶颈链路的缓冲区占用都渐近收敛到预定义的值。该算法基于反馈控制理论中的PI(比例积分)控制,并且通过吸引Nyquist稳定性标准,在存在具有异构往返延迟的源的情况下得出了可用的稳定性条件。此外,我们提出了一种高效的反馈整合算法,该算法比基于硬同步的同类算法在计算上更简单,并且通过防止等待未直接影响会话速率的后向控制数据包来消除不必要的整合延迟。通过仿真,我们进一步验证了基于这两种算法的分析结果以及所提出的多速率组播流控制方案的性能。

著录项

  • 来源
    《Computer networks》 |2010年第11期|P.1727-1738|共12页
  • 作者单位

    Department of Aeronautics and Astronautics, Massachusetts Institute of Technology, 77 Mass Ave., Cambridge, MA 02139, United States;

    rnCentre for Quantifiable Quality of Service in Communication Systems (Q2S), Norwegian University of Science and Technology (NTNU), NO-7491 Trondheim, Norway;

    rnSchool of Electrical Engineering and Computer Science, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, Republic of Korea;

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  • 正文语种 eng
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  • 关键词

    multi-rate overlay multicast; max-min flow control; nyquist stability criterion; feedback consolidation;

    机译:多速率覆盖多播;最大-最小流量控制;奈奎斯特稳定性判据;反馈合并;

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