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Chaos suppression via Euler-Lagrange control design for a class of chemical reacting system (Q1720810)

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scientific article; zbMATH DE number 7018868
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English
Chaos suppression via Euler-Lagrange control design for a class of chemical reacting system
scientific article; zbMATH DE number 7018868

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    Chaos suppression via Euler-Lagrange control design for a class of chemical reacting system (English)
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    8 February 2019
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    Summary: In this work the problem of chaos suppression for a class of continuous chemical reactor with chaotic dynamics is tackled via a nonlinear control strategy. The proposed controller is developed under the framework of optimal control theory, where a functional is proposed to maximize the chemical reaction rate via a proposed Lagrangian-type which contains directly the state equation of the reacting system, avoiding the problems of Lagrange, the Hamiltonian formulation, and consequently the explicit constraints to the system. This allows solving in an easier form the optimization problem in comparison with the standard methods. This procedure allows suppressing the chaotic behavior of the reacting system by stabilizing the reaction rate term by leading it to an extreme value. Numerical experiments are done in order to show the satisfactory performance of the proposed methodology.
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