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Stability and Convergence of TCP-like Congestion Controllers in a Many-Flows Regime

机译:多种流动制度中TCP样拥堵控制器的稳定性和收敛性

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With the rapid growth of Internet, parameter design and analysis for large-scale networks has become a topic of active interest. Since simulation of such large scale systems is not easy, deterministic fluid models have been widely used for both qualitative understanding of the behavior, as well as parameter design for such networks. In this paper, we first study a deterministic fluid model for Internet congestion control when there are multiple TCP-like flows present. We provide conditions under which such a system is globally asymptotically stable in the presence of feedback delay. We then study the corresponding system with the addition of web mice and other non-responsive flows modeled as stochastic disturbances. We show that, when there are a large number of flows, choosing parameters based on the global stability criterion for the deterministic system (with the noise replaced by its mean value) ensures global stability for the stochastic system as well. Numerical examples and simulation results with some popular active queue management mechanisms validate the parameter choices from analysis. The results indicate that a system with multiple TCP-like flows is globally stable as long as the bandwidth-delay product per flow is not very small.
机译:随着互联网的快速增长,大型网络的参数设计和分析已成为积极兴趣的主题。由于这种大规模系统的模拟不容易,因此确定性流体模型已广泛用于对行为的定性理解,以及该网络的参数设计。在本文中,我们首先研究存在多个TCP样流的互联网拥塞控制的确定性流体模型。在反馈延迟存在下,我们提供这种系统在全局渐近稳定的条件。然后,我们将相应的系统进行添加,并添加纸质小鼠和模型作为随机扰动的其他非响应流。我们表明,当有大量流动时,根据确定性系统的全局稳定标准选择参数(通过其平均值取代的噪声)确保了随机系统的全局稳定性。具有一些流行的活动队列管理机制的数值示例和仿真结果验证了来自分析的参数选择。结果表明,具有多个TCP样流的系统是全球稳定的,只要每个流的带宽延迟产品不是很小。

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    《IEEE InfoCOM 》|2003年||共11页
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  • 中图分类 TB907.2-53;
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