DocumentCode :
1661001
Title :
Linear time-delay system model and stability of AQM bottleneck networks
Author :
Xiao, Yang ; Kim, Kiseon
Author_Institution :
Inst. of Inf. Sci., Beijing Jiaotong Univ., Beijing
fYear :
2008
Firstpage :
2032
Lastpage :
2036
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.
Keywords :
Laplace transforms; Z transforms; delays; numerical stability; queueing theory; telecommunication traffic; transport protocols; 2D Laplace-z transform; AQM bottleneck networks; TCP traffic flows; TCP/UDP; active queue manage networks; equilibrium points; fluid-based model; linear time-delay system model; linearization processing; nonlinear fluid models; nonlinear large scale system; round trip time; stability analysis; Electronic mail; Fluid flow control; Information science; Polynomials; Stability analysis; System testing; Technology management; Telecommunication traffic; Traffic control; Uncertainty; active queue management; network congestion control; quasi-polynomials; random early detection (RED); stability analysis; time-delay systems;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Signal Processing, 2008. ICSP 2008. 9th International Conference on
Conference_Location :
Beijing
Print_ISBN :
978-1-4244-2178-7
Electronic_ISBN :
978-1-4244-2179-4
Type :
conf
DOI :
10.1109/ICOSP.2008.4697544
Filename :
4697544
Link To Document :
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