On scalable modeling of TCP congestion control mechanism for large-scale IP networks

H. Ohsaki, Juñya Ujiie, M. Imase
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引用次数: 19

Abstract

In this paper, we propose an analytic approach of modeling a closed-loop network with multiple feedback loops using fluid-flow approximation. Specifically, we model building blocks of a network (i.e., the congestion control mechanism of TCP, propagation delay of a transmission link, and the buffer of a router) as independent continuous-time systems. By interconnecting these systems, we obtain the model for a complex closed-loop network. We improve the accuracy of analytic models for TCP congestion control and RED router by extending existing fluid-flow models. First, we obtain a block diagram for each continuous-time system using a standard CAD tool widely used in control engineering. Second, we evaluate the performance of a closed-loop network with multiple feedback loops by connecting these block diagrams. We also validate the effectiveness of our analytic approach by comparing our analytic results with simulation results. Unlike other fluid-based modeling approaches, our analytic approach is scalable and accurate; our analytic approach is scalable in terms of the number of TCP connections and routers since both input/output of all continuous-time systems are uniformly defined as a packet transmission rate. Our analytic approach is accurate since the timeout mechanism of TCP and the packet dropping algorithm of RED router are rigorously modeled in our continuous-time systems.
大规模IP网络中TCP拥塞控制机制的可扩展建模
在本文中,我们提出了一种用流体流动近似的方法来模拟具有多个反馈回路的闭环网络。具体来说,我们将网络的构建块(即TCP的拥塞控制机制、传输链路的传播延迟和路由器的缓冲区)建模为独立的连续时间系统。通过将这些系统互连,我们得到了一个复杂闭环网络的模型。通过扩展现有的流体流模型,提高了TCP拥塞控制和RED路由器分析模型的精度。首先,我们使用在控制工程中广泛使用的标准CAD工具获得每个连续时间系统的框图。其次,我们通过连接这些方框图来评估具有多个反馈回路的闭环网络的性能。通过将分析结果与仿真结果进行比较,验证了分析方法的有效性。与其他基于流体的建模方法不同,我们的分析方法具有可扩展性和准确性;我们的分析方法在TCP连接和路由器的数量方面是可扩展的,因为所有连续时间系统的输入/输出都统一定义为数据包传输速率。我们的分析方法是准确的,因为我们的连续时间系统严格地模拟了TCP的超时机制和RED路由器的丢包算法。
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