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Suboptimal Control of Fractional-Order Dynamic Systems With Delay Argument

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Date

2018

Journal Title

Journal ISSN

Volume Title

Publisher

Sage Publications Ltd

Open Access Color

Green Open Access

No

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No
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Top 1%
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Top 10%
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Abstract

In this paper, an efficient linear programming formulation is proposed for a class of fractional-order optimal control problems with delay argument. By means of the Lagrange multiplier in the calculus of variations and using the formula for fractional integration by parts, the Euler-Lagrange equations are derived in terms of a two-point fractional boundary value problem including an advance term as well as the delay argument. The derived equations are then reduced into a linear programming problem by using a Grunwald-Letnikov approximation for the fractional derivatives and introducing a new transformation in the calculus of variations. The new scheme is also effective for the delay fractional optimal control problems influenced by the external persistent disturbances. Numerical simulations and comparative results verify that the proposed approach is efficient and easy to implement.

Description

Keywords

Fractional Calculus, Optimal Control, Time-Delay System, Euler-Lagrange Equations, Grunwald-Letnikov Approximation, Linear Programming, optimal control, Fractional derivatives and integrals, time-delay system, linear programming, Control/observation systems in abstract spaces, Euler-Lagrange equations, fractional calculus, Grünwald-Letnikov approximation

Fields of Science

0209 industrial biotechnology, 0103 physical sciences, 02 engineering and technology, 01 natural sciences

Citation

Jajarmi, Amin; Baleanu, Dumitru, "Suboptimal control of fractional-order dynamic systems with delay argument", Journal of Vibration and Control, Vol. 24, No. 12, pp. 2430-2446, (2018)

WoS Q

Q2

Scopus Q

Q2
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OpenCitations Citation Count
90

Source

Journal of Vibration and Control

Volume

24

Issue

12

Start Page

2430

End Page

2446
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Citations

CrossRef : 89

Scopus : 92

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Mendeley Readers : 16

SCOPUS™ Citations

97

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Web of Science™ Citations

84

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1

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