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Information Journal Paper

Title

A Direct Method For Solving Linear Delay Differential Equations

Pages

  273-282

Abstract

 In this paper, we propose Direct methods to solve linear delay di erential equations (LDDEs) based on vector forms of Block-Pulse Functions (BPFs) and Triangular Functions (TFs). Operational matrix of integration of BPFs and TFs is applied to transform LDDE to a linear system of algebraic equations. Furthermore, some numerical examples are presented to indicate the reliability and the accuracy of these methods. Convergence analysis of the present method has been discussed, too.

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    APA: Copy

    Zeynal, E., BABOLIAN, E., & DAMERCHELI, T.. (2020). A Direct Method For Solving Linear Delay Differential Equations. INTERNATIONAL JOURNAL OF INDUSTRIAL MATHEMATICS, 12(3), 273-282. SID. https://sid.ir/paper/755746/en

    Vancouver: Copy

    Zeynal E., BABOLIAN E., DAMERCHELI T.. A Direct Method For Solving Linear Delay Differential Equations. INTERNATIONAL JOURNAL OF INDUSTRIAL MATHEMATICS[Internet]. 2020;12(3):273-282. Available from: https://sid.ir/paper/755746/en

    IEEE: Copy

    E. Zeynal, E. BABOLIAN, and T. DAMERCHELI, “A Direct Method For Solving Linear Delay Differential Equations,” INTERNATIONAL JOURNAL OF INDUSTRIAL MATHEMATICS, vol. 12, no. 3, pp. 273–282, 2020, [Online]. Available: https://sid.ir/paper/755746/en

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