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Covariances of Linear Stochastic Differential Equations for Analyzing Computer Networks

Hua FAN1,2( )Xiuming SHAN1Jian YUAN1Yong REN1
Department of Electronic Engineering, Tsinghua University, Beijing 100084, China
Department of Cinematography, Beijing Film Academy, Beijing 100088, China
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Abstract

Analyses of dynamic systems with random oscillations need to calculate the system covariance matrix, but this is not easy even in the linear case if the random term is not a Gaussian white noise. A universal method is developed here to handle both Gaussian and compound Poisson white noise. The quadratic variations are analyzed to transform the problem into a Lyapunov matrix differential equation. Explicit formulas are then derived by vectorization. These formulas are applied to a simple model of flows and queuing in a computer network. A stability analysis of the mean value illustrates the effects of oscillations in a real system. The relationships between the oscillations and the parameters are clearly presented to improve designs of real systems.

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Tsinghua Science and Technology
Pages 264-271

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Cite this article:
FAN H, SHAN X, YUAN J, et al. Covariances of Linear Stochastic Differential Equations for Analyzing Computer Networks. Tsinghua Science and Technology, 2011, 16(3): 264-271. https://doi.org/10.1016/S1007-0214(11)70038-4

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Received: 25 January 2010
Revised: 22 April 2011
Published: 01 June 2011
© Tsinghua University Press 2011