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Journal of Applied Sciences
  Year: 2011 | Volume: 11 | Issue: 14 | Page No.: 2585-2591
DOI: 10.3923/jas.2011.2585.2591
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Operational Tau Approximation for Neutral Delay Differential Systems

J. Sedighi Hafshejani, S. Karimi Vanani and J. Esmaily

Neutral Delay Differential Systems (NDDSs) arise in many areas of various mathematical modeling. Infectious diseases, population dynamics, physiological and pharmaceutical kinetics and chemical kinetics, the navigational control of ships and mechanical systems, chemical process simulation and optimal control are the main field concerning with NDDSs. The purpose of this study was to present an extension of the algebraic formulation of the Operational Tau Method (OTM) for the numerical solution of NDDSs. The proposed method converts the delay parts of the desired NDDS to some operational matrices. Then the NDDS reduces to a set of algebraic equations. Some orthogonal bases including shift Chebyshev and shifted Legendre polynomials are used to decrease the volume of computations. Two illustrative linear and nonlinear experiments are included to show the high accuracy and efficiency of the proposed method.
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  •    A Telescoping Numerical Scheme for the Solution of Retarded Delay Differential Systems
  •    An Application Method for the Solution of Second Order Non Linear Ordinary Differential Equations by Chebyshev Polynomials
  •    On the Numerical Approximation of Delay Differential Equations by a Decomposition Method
  •    Stochastic Modeling of Blood Glucose Levels in Type-2 Diabetes Mellitus
  •    On the Approximative Solution of Boundary Value Problems by Collocation
  •    Design of Barotropic Spectral Model for Predicting of Vorticity Field
How to cite this article:

J. Sedighi Hafshejani, S. Karimi Vanani and J. Esmaily, 2011. Operational Tau Approximation for Neutral Delay Differential Systems. Journal of Applied Sciences, 11: 2585-2591.

DOI: 10.3923/jas.2011.2585.2591






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