2024 Optimal control, well-posedness and sensitivity analysis for a class of generalized evolutionary systems
Xiuwen Li, Zhi Luo, Zhenhai Liu
Topol. Methods Nonlinear Anal. 63(2): 687-716 (2024). DOI: 10.12775/TMNA.2023.036

Abstract

In this paper, we are concerned with a generalized evolution dynamical system, called fractional differential variational-hemivariational inequality (FDVHVI, for short), which is composed of a nonlinear fractional evolution inclusion and a time-dependent mixed variational-hemivariational inequality in the framework of Banach spaces. The objective of this paper is fourfold. The first one is to investigate the nonemptiness as well as the compactness of the mild solutions set to the FDVHVI. The second aim is to study the optimal control problems described by the FDVHVI. The third goal is to establish the well-posedness results of the FDVHVI, including the existence, uniqueness, and stability. Furthermore, the sensitivity analysis of a perturbed problem associated to the FDVHVI with respect to the initial state and the two parameters is also obtained. Finally, a comprehensive fractional model is given to illustrate the validity of our main results.

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Xiuwen Li. Zhi Luo. Zhenhai Liu. "Optimal control, well-posedness and sensitivity analysis for a class of generalized evolutionary systems." Topol. Methods Nonlinear Anal. 63 (2) 687 - 716, 2024. https://doi.org/10.12775/TMNA.2023.036

Information

Published: 2024
First available in Project Euclid: 17 July 2024

Digital Object Identifier: 10.12775/TMNA.2023.036

Keywords: fractional evolution inclusion , mixed variational-hemivariational inequality , optimal control , sensitivity analysis , well-posedness

Rights: Copyright © 2024 Juliusz P. Schauder Centre for Nonlinear Studies

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Vol.63 • No. 2 • 2024
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