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Representation of Solutions to Linear Quaternion Differential Equations With Delay

  • Teng Fu [1] ; Kit Ian Kou [2] ; JinRong Wang [1]
    1. [1] Guizhou University

      Guizhou University

      China

    2. [2] University of Macau

      University of Macau

      RAE de Macao (China)

  • Localización: Qualitative theory of dynamical systems, ISSN 1575-5460, Vol. 21, Nº 4, 2022
  • Idioma: inglés
  • Enlaces
  • Resumen
    • In this paper, linear quaternion differential equations (LQDEs) with delay attracts our attention. In the light of delayed quaternion matrix exponential and the method of variation of constants, we derive the solutions of homogeneous and nonhomogeneous LQDEs with delay under the assumption of permutation matrices. Further, we investigate the solutions of homogeneous and nonhomogeneous LQDEs with delay without the requirement of permutation matrices. Finally, examples illustrate the validity of the results.

  • Referencias bibliográficas
    • 1. Gibbon, J.D.: A quaternionic structure in the three-dimensional Euler and ideal magnetohydrodynamics equations. Physica D 166, 17–28 (2002)
    • 2. Gibbon, J.D., Holm, D.D., Kerr, R.M., et al.: Quaternions and particle dynamics in the Euler fluid equations. Nonlinearity 19, 1969–1983...
    • 3. Gibbon, J.D., Holm, D.D.: Lagrangian particle paths and ortho-normal quaternion frames. Nonlinearity 20, 1745–1759 (2007)
    • 4. Adler, S.L.: Quaternionic quantum mechanics and quantum fields. Oxford University Press, New York (1995)
    • 5. Adler, S.L.: Quaternionic quantum field theory. Commun. Math. Phys. 104, 611–656 (1986)
    • 6. Giardino, S.: Quaternionic quantum mechanics in real Hilbert space. J. Geom. Phys. 158, 103956 (2020)
    • 7. Chen, Y., Wu, J., Bao, H.: Finite-time stabilization for delayed quaternion-valued coupled neural networks with saturated impulse. Appl....
    • 8. Jiang, Q., Wang, Q.: Almost periodic solutions for quaternion-valued neural networks with mixed delays on time scales. Neurocomputing 439,...
    • 9. Li, D., Zhang, Z., Zhang, X.: Periodic solutions of discrete-time quaternion-valued BAM neural networks. Chaos, Solitons & Fractals...
    • 10. Huang, Y., Meng, Z.: Global distributed attitude tracking control of multiple rigid bodies via quaternionbased hybrid feedback. IEEE Trans....
    • 11. Kristiansen, R., Nicklasson, P.J., Gravdahl, J.T.: Satellite attitude control by quaternion-based backstepping. IEEE Trans. Control Syst....
    • 12. Campos, J., Mawhin, J.: Periodic solutions of quaternionic-valued ordinary differential equations. Annali di Matematica 185, S109–S127...
    • 13. Cai, Z., Kou, K.: Laplace transform: a new approach in solving linear quaternion differential equations. Mathemat. Method. Appl. Sci....
    • 14. Donachali, A.K., Jafari, H.: A decomposition method for solving quaternion differential equations. Int. J. Appl. Comput. Mathemat. 6,...
    • 15. Kou, K., Xia, Y.: Linear quaternion differential equations: basic theory and fundamental results. Stud. Appl. Math. 141, 3–45 (2018)
    • 16. Kou, K., Liu, W., Xia, Y.: Solve the linear quaternion-valued differential equations having multiple eigenvalues. J. Math. Phys. 60, 023510...
    • 17. Xia, Y., Huang, H., Kou, K.: An algorithm for solving linear nonhomogeneous quaternion-valued differential equations (2016). arXiv:1602.08713
    • 18. Kyrchei, I.I.: Linear differential systems over the quaternion skew field (2018). arXiv:1812.03397
    • 19. Gasull, A., Llibre, J., Zhang, X.: One-dimensional quaternion homogeneous polynomial differential equations. J. Math. Phys. 50, 082705...
    • 20. Cai, Z., Kou, K.: Solving quaternion ordinary differential equations with two-sided coefficients. Qualitative Theory Dynamical Syst. 17,...
    • 21. Suo, L., Feˇckan, M., Wang, J.: Quaternion-valued linear impulsive differential equations. Qualitative Theory Dynamical Syst. 20, 33 (2021)
    • 22. Cheng, D., Kou, K., Xia, Y.: Floquet theory for quaternion-valued differential equations. Qualitative Theory Dynamical Syst. 19, 14 (2020)
    • 23. Chen, D., Feˇckan, M., Wang, J.: On the stability of linear quaternion-valued differential equations. Qualitative Theory Dynamical Syst....
    • 24. Cai, Z., Kou, K., Zhang, W.: Solutions of quaternion-valued differential equations with or without commutativity (2020). arXiv:2012.06744
    • 25. Chen, D., Feˇckan, M., Wang, J.: Investigation of controllability and observability for linear quaternionvalued systems from its complex-valued...
    • 26. Chen, D., Feˇckan,M.,Wang, J.: Hyers-Ulam stability for linear quaternion-valued differential equations with constant coefficient. Rocky...
    • 27. Khusainov, D.Y., Shuklin, G.V.: Linear autonomous time-delay system with permutation matrices solving. Studies of the University of Žilina...
    • 28. Mahmudov, N.I.: Delayed perturbation of Mittag-Leffler functions and their applications to fractional linear delay differential equations....
    • 29. Aydin, M., Mahmudov, N.I.: On a study for the neutral Caputo fractional multi-delayed differential equations with noncommutative coefficient...
    • 30. Lv, W., He, H., Li, K.: Robust optimal control of a network-based SIVS epidemic model with time delay. Chaos, Solitons & Fractals...
    • 31. Li, M., Wang, J.: Existence results and Ulam type stability for conformable fractional oscillating system with pure delay. Chaos, Solitons...
    • 32. Serrano, F.E., Ghosh, D.: Robust stabilization and synchronization in a network of chaotic systems with time-varying delays. Chaos, Solitons...
    • 33. Kaabar, M.K.A., Kaplan, M., Siri, Z.: New exact soliton solutions of the (3+1)-dimensional conformable Wazwaz-Benjamin-Bona-Mahony...
    • 34. Kaabar, M.K.A., Martínez, F., Gómez-Aguilar, J.F., et al.: New approximate analytical solutions for the nonlinear fractional Schrödinger...
    • 35. Raza, N., Rafiq, M.H., Kaplan, M., et al.: The unified method for abundant soliton solutions of local time fractional nonlinear evolution...

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