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      Feedback Control of a Chaotic Finance System with Two Delays

      1 , 2
      Complexity
      Hindawi Limited

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          Abstract

          In this research, we use the double-delayed feedback control (DDFC) method in order to control chaos in a finance system. Taking delays as parameters, the dynamic behavior of the system is investigated. Firstly, we study the local stability of equilibrium and the existence of local Hopf bifurcations. It can find that the delays can make chaos disappear and generate a stable equilibrium or periodic solution, which means the effectiveness of DDFC method. By using the normal form theory and center manifold argument, one derives the explicit algorithm for determining the properties of bifurcation. In addition, we also apply some mathematical methods (stability crossing curves) to show the stability changes of the financial system in two parameters’ τ 1 , τ 2 plane. Finally, we give some numerical simulations by Matlab Microsoft to show the validity of theoretical analyses.

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          Synchronization in chaotic systems

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            Continuous control of chaos by self-controlling feedback

            K Pyragas (1992)
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              Dynamics analysis of a delayed virus model with two different transmission methods and treatments

              In this paper, a delayed virus model with two different transmission methods and treatments is investigated. This model is a time-delayed version of the model in (Zhang et al. in Comput. Math. Methods Med. 2015:758362, 2015). We show that the virus-free equilibrium is locally asymptotically stable if the basic reproduction number is smaller than one, and by regarding the time delay as a bifurcation parameter, the existence of local Hopf bifurcation is investigated. The results show that time delay can change the stability of the endemic equilibrium. Finally, we give some numerical simulations to illustrate the theoretical findings.
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                Author and article information

                Journal
                Complexity
                Complexity
                Hindawi Limited
                1076-2787
                1099-0526
                May 26 2020
                May 26 2020
                : 2020
                : 1-17
                Affiliations
                [1 ]School of Liberal Arts and Sciences, North China Institute of Aerospace Engineering, Langfang 065000, China
                [2 ]College of Mathematics and Systems Science, Shandong University of Science and Technology, Qingdao 266590, China
                Article
                10.1155/2020/4937569
                394a31e0-69db-48e1-8601-00585e6104d5
                © 2020

                http://creativecommons.org/licenses/by/4.0/

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