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Event-triggered reliable synchronization of chaotic coronary artery system

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PL
Wyzwalana zdarzeniem niezawodna synchronizacja chaotycznego układu tętnic wieńcowych
Języki publikacji
EN
Abstrakty
EN
This paper studies the problem of synchronization for chaotic coronary artery system. The heart receives its oxygen and nourishment from the blood vessel namely coronary artery. Furthermore, due to some uncertain factors such as high blood pressure, thyroid, heart disorders, and others can cause the inner pressure and diameter of the coronary artery vessel to change, resulting in an aberrant pulse. In order to synchronize affected system with healthy system, event -triggered reliable controller is designed with the aid of linear matrix inequalities. Finally, simulations are performed to ensure that the developed controller is successful.
PL
Niniejsza praca dotyczy problemu synchronizacji chaotycznego układu tętnic wieńcowych. Serce otrzymuje tlen i pożywienie z ˙ naczynia krwionosnego, czyli tętnicy wiencowej. Co więcej, z powodu pewnych niepewnych czynników, takich jak wysokie cisnienie krwi, choroby ´ tarczycy, serca i inne, mogą powodować zmianę wewnętrznego ciśnienia i średnicy naczynia wieńcowego, co skutkuje nieprawidłowym tętnem. Aby zsynchronizowac uszkodzony system ze zdrowym systemem, niezawodny sterownik wyzwalany zdarzeniami został zaprojektowany z wykorzystaniem ´ liniowych nierównosci macierzy. Na koniec przeprowadzane są symulacje, aby upewnic się, ze opracowany sterownik odniesie sukces.
Rocznik
Strony
67--70
Opis fizyczny
Bibliogr. 23 poz., rys.
Twórcy
  • Department of Mathematics, Karunya Institute of Technology and Sciences, coimbatore
  • Department of Mathematics, Karunya Institute of Technology and Sciences, coimbatore
  • Department of Digital Sciences, Karunya Institute of Technology and Sciences, coimbator
Bibliografia
  • [1] Sivaranjani, K, Rakkiyappan, R. Joo, Y. H.: Event triggered reliable synchronization of semi-Markovian jumping complex dynamical networks via generalized inequalities , Journal of the Franklin Institute, 355, pp. 3691–3716, 2018.
  • [2] Rakkiyappan, R, Sivaranjani, K.: Sampled-data synchronization and state estimation for nonlinear singularly perturbed complex networks with time-delays , Nonlinear Dynamics, 84, pp. 1623–1636, 2016.
  • [3] Dharani, S., Rakkiyappan, R., Park, J. H.: Pinning sampleddata synchronization of coupled inertial neural networks with reaction-diffusion terms and time-varying delays, Neurocomputing, 227, pp. 101-107, 2017.
  • [4] Sivaranjani, K., Rakkiyappan, R., Cao, J., Alseadi, A.: Synchronization of nonlinear singularly perturbed complex networks with uncertain inner coupling via event triggered control, Applied Mathematics and Computation, Applied Mathematics and Computation, 311, pp. 283-299, 2017.
  • [5] Ahmad H, Ushirobira R, Efimov D.: On robust synchronization of nonlinear systems with application to grid integration of renewable energy sources, Annual Reviews in Control, https://doi.org/10.1016/j.arcontrol.2021.06.002, 2021.
  • [6] Li W.: Tracking control of chaotic coronary artery systems, International journal of system science, 43, pp. 21–30, 2012.
  • [7] Li B, Zhao Z, Wang R, Ding G.: Synchronization control design based on wirtinger inequality for uncertian coronary artery time-delay system with input saturation, IEEE Access,7, pp. 76611–19, 2019.
  • [8] Li X.M, Zhao Z.S, Zhang J, Sun L.K : H∞ synchronization of the coronary artery system with input time varying delay, Chinese Phyics B, 25, pp. 60504, 2016.
  • [9] Lin C.J, Yang S.K, Yau H.T : Chaos suppression control of a coronary artery system with uncertainties by using variable structure control, Computers and Mathematics with Applications, 64(5), pp. 988-995, 2012.
  • [10] Wu W.S, Zhao Z.S, Zhang J, Sun, L.K : State feedback synchronization control of coronary artery chaos system with interval time-varying delay, Nonlinear Dynamics, 87, pp. 1773-1783, 2017.
  • [11] Zhang J, Li M, Raissi T.: Reliable control for positive switched systems with random nonlinearities, ISA Transactions, 108, pp. 48-57, 2021.
  • [12] Luo, J., Liu, X., Tian,W., Zhong, S., Shi, K., Li,M.: Finite-time H∞ reliable control for T–S fuzzy systems with variable sampling, Physica A: Statistical Mechanics and its Applications, 538 (2020) 122697.
  • [13] Sakthivel, R., Satheesh, T., Harshavarthini, S. and Almakhles, D. J.: Design of resilient reliable control for uncertain periodic piecewise systems with time-varying delay and disturbances, Journal of the Franklin Institute, 357, pp. 12326-12345, 2020.
  • [14] Yang D, Zong G, Nguang S.K.: H∞ bumpless transfer reliable control of Markovian switching LPV systems subject to actuator failures, Information Sciences, 512, pp. 431-445, 2020.
  • [15] Li,Q. Shen,B. Liang,J. Shu, H. : Event triggered synchronization control for complex networks with uncertain inner coupling, International journal of general systems, 44, pp. 212–225, 2015.
  • [16] Bao, Y., Zhang, Y., Zhang, B.: Fixed-time synchronization of coupled memristive neural networks via event-triggered control, Applied Mathematics and Computation, 411, pp. 126542, 2021.
  • [17] Yang D, Wang M, Song S, Lu J.: Event-triggered reliable H∞ control for a class of nonlinear distributed parameter systems within a finite-time interval, Journal of the Franklin Institute, 357(16), pp. 11368-11393, 2020.
  • [18] Zhang W, Yang X, Yang S, Alsaedi A.: Finite-time and fixedtime bipartite synchronization of complex networks with signed graphs, Mathematics and Computers in Simulation, 188, pp. 319–329, 2021.
  • [19] Pan J, Zhang Z.: Finite-time synchronization for delayed complex-valued neural networks via the exponential-type controllers of time variable, Chaos, Solitons and Fractals, 146, pp. 110897, 2021.
  • [20] Du F, Lu J.G.: New criterion for finite-time synchronization of fractional order memristor-based neural networks with time delay, Applied Mathematics and Computation, 389, pp. 125616, 2021.
  • [21] Harshavarthini, S, Sakthivel, R. Kong, F.: Finite time synchronization of choatic coronary artery system with input time varying delay, Choas, Solitons and Fractals, 134, pp. 109683, 2020.
  • [22] Elahi, A., Alfi, A.: Finite-time H∞ control of uncertain networked control systems with randomly varying communication delays, ISA Transactions, 69, pp. 6588, 2017.
  • [23] Seuret, A., Gouaisbaut, F.: Wirtinger-based integral inequality: Application to time-delay systems, Automatica, 49, pp. 2860-2866, 2013.
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-04b6f788-dff9-4dfa-b67a-ee9f2a46ad7d
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