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Queue Dynamics With Window Flow Control

机译:带窗口流控制的队列动态

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This paper develops a new model that describes the queueing process of a communication network when data sources use window flow control. The model takes into account the burstiness in sub-round-trip time (RTT) timescales and the instantaneous rate differences of a flow at different links. It is generic and independent of actual source flow control algorithms. Basic properties of the model and its relation to existing work are discussed. In particular, for a general network with multiple links, it is demonstrated that spatial interaction of oscillations allows queue instability to occur even when all flows have the same RTTs and maintain constant windows. The model is used to study the dynamics of delay-based congestion control algorithms. It is found that the ratios of RTTs are critical to the stability of such systems, and previously unknown modes of instability are identified. Packet-level simulations and testbed measurements are provided to verify the model and its predictions.
机译:本文开发了一个新模型,该模型描述了当数据源使用窗口流控制时通信网络的排队过程。该模型考虑了亚往返时间(RTT)时标的突发性以及不同链路上流的瞬时速率差异。它是通用的,与实际的源流控制算法无关。讨论了模型的基本属性及其与现有工作的关系。特别是,对于具有多个链路的通用网络,已证明,即使所有流都具有相同的RTT并保持恒定的窗口,振荡的空间相互作用也允许发生队列不稳定。该模型用于研究基于延迟的拥塞控制算法的动力学。发现RTT的比率对于此类系统的稳定性至关重要,并且可以确定以前未知的不稳定模式。提供数据包级仿真和测试平台测量以验证模型及其预测。

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