Linear time-delay system model and stability of AQM bottleneck networks

Yang Xiao, Kiseon Kim
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引用次数: 1

Abstract

Active queue manage networks belong to nonlinear large scale systems. There are many uncertain factors such access number of subscribers, traffic types, link capacities and round trip time, impact on the networkspsila behaviors. However, the existing nonlinear fluid models for AQM networks have not considered the hybrid traffic flows: TCP/UDP ones, they only are valid for TCP traffic flows. This paper establishes a general linear time-delay model for the bottleneck networks with TCP/UDP AQM, considering the uncertainty of access number of subscribers, traffic types, link capacities and round trip time. The proposed time-delay system model is derived from linearization processing for fluid-based model at equilibrium points. Resort to the time-delay system model, the stability analysis of the AQM networks with uncertainty can be analyzed in 2-D s-z domain. At equilibrium points, the bottleneck networks are described by uncertain linear time-delay systems, then 2-D (two-dimensional) Laplace-z transform has been applied for the stability test of the network. The stability implies the congestion conditions of the AQM networks. Simulations verify the stability analysis for AQM network to be valid, the AQM network approaches to full utilization without PI controller of.
线性时滞系统模型与AQM瓶颈网络的稳定性
主动队列管理网络属于非线性大系统。用户接入数量、流量类型、链路容量、往返时间等不确定因素对网络运行行为的影响很大。然而,现有的AQM网络非线性流体模型没有考虑TCP/UDP混合流量,它们只对TCP流量有效。考虑用户接入数、流量类型、链路容量和往返时间的不确定性,建立了TCP/UDP AQM瓶颈网络的一般线性时延模型。所提出的时滞系统模型是在平衡点处对基于流体的模型进行线性化处理后得到的。利用时滞系统模型,可以在二维s-z域对具有不确定性的AQM网络进行稳定性分析。在平衡点处,瓶颈网络用不确定线性时滞系统描述,然后应用二维拉普拉斯-z变换对网络进行稳定性检验。稳定性意味着AQM网络的拥塞状况。仿真验证了AQM网络稳定性分析的有效性,在没有PI控制器的情况下,AQM网络接近充分利用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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