Title :
Perturbation analysis and optimization of stochastic flow networks
Author :
Sun, Gang ; Cassandras, Christos G. ; Wardi, Yorai ; Panayiotou, Christos G. ; Riley, George F.
Author_Institution :
Dept. of Manuf. Eng., Boston Univ., MA, USA
Abstract :
We consider a stochastic fluid model of a network consisting of several single-class nodes in tandem and perform perturbation analysis for the node queue contents and associated event times with respect to a threshold parameter at the first node. We then derive infinitesimal perturbation analysis (IPA) derivative estimators for loss and buffer occupancy performance metrics with respect to this parameter and show that these estimators are unbiased. We also show that the estimators depend only on data directly observable from a sample path of the actual underlying discrete event system, without any knowledge of the stochastic characteristics of the random processes involved. This renders them computable in online environments and easily implementable for network management and optimization. This is illustrated by combining the IPA estimators with standard gradient based stochastic optimization methods and providing simulation examples.
Keywords :
discrete event systems; gradient methods; optimisation; perturbation techniques; stochastic processes; telecommunication congestion control; buffer occupancy performance metrics; discrete event system; gradient based stochastic optimization methods; infinitesimal perturbation analysis derivative estimators; node queue contents; stochastic flow network optimization; stochastic fluid model; Computer network management; Computer networks; Discrete event systems; Environmental management; Measurement; Performance analysis; Queueing analysis; Random processes; Stochastic processes; Stochastic systems;
Journal_Title :
Automatic Control, IEEE Transactions on
DOI :
10.1109/TAC.2004.838498