@article{VSPUI_2021_17_4_a10,
author = {A. P. Zhabko and V. V. Provotorov and A. I. Shindyapin},
title = {Optimal control of a differential-difference parabolic system with distributed parameters on the graph},
journal = {Vestnik Sankt-Peterburgskogo universiteta. Prikladna\^a matematika, informatika, processy upravleni\^a},
pages = {433--448},
year = {2021},
volume = {17},
number = {4},
language = {en},
url = {http://geodesic.mathdoc.fr/item/VSPUI_2021_17_4_a10/}
}
TY - JOUR AU - A. P. Zhabko AU - V. V. Provotorov AU - A. I. Shindyapin TI - Optimal control of a differential-difference parabolic system with distributed parameters on the graph JO - Vestnik Sankt-Peterburgskogo universiteta. Prikladnaâ matematika, informatika, processy upravleniâ PY - 2021 SP - 433 EP - 448 VL - 17 IS - 4 UR - http://geodesic.mathdoc.fr/item/VSPUI_2021_17_4_a10/ LA - en ID - VSPUI_2021_17_4_a10 ER -
%0 Journal Article %A A. P. Zhabko %A V. V. Provotorov %A A. I. Shindyapin %T Optimal control of a differential-difference parabolic system with distributed parameters on the graph %J Vestnik Sankt-Peterburgskogo universiteta. Prikladnaâ matematika, informatika, processy upravleniâ %D 2021 %P 433-448 %V 17 %N 4 %U http://geodesic.mathdoc.fr/item/VSPUI_2021_17_4_a10/ %G en %F VSPUI_2021_17_4_a10
A. P. Zhabko; V. V. Provotorov; A. I. Shindyapin. Optimal control of a differential-difference parabolic system with distributed parameters on the graph. Vestnik Sankt-Peterburgskogo universiteta. Prikladnaâ matematika, informatika, processy upravleniâ, Tome 17 (2021) no. 4, pp. 433-448. http://geodesic.mathdoc.fr/item/VSPUI_2021_17_4_a10/
[1] Provotorov V. V., Provotorova E. N., “Synthesis of optimal boundary control of parabolic systems with delay and distributed parameters on the graph”, Vestnik of Saint Petersburg University. Applied Mathematics. Computer Science. Control Processes, 13:2 (2017), 209–224 (In Russian) | DOI | MR
[2] Provotorov V. V., Provotorova E. N., “Optimal control of the linearized Navier-Stokes system in a netlike domain”, Vestnik of Saint Petersburg University. Applied Mathematics. Computer Science. Control Processes, 13:4 (2017), 431–443 | DOI | MR
[3] Provotorov V. V., “Boundary control of a parabolic system with delay and distributed parameters on the graph”, Intern. Conference “Stability and Control Processes” in memory of V. I. Zubov (SCP) (St. Petersburg, Russia, 2015), 126–128
[4] Podvalny S. L., Provotorov V. V., “Starting control of a parabolic system with distributed parameters on a graph”, Vestnik of Saint Petersburg University. Series 10. Applied Mathematics. Computer Science. Control Processes, 2015, no. 3, 126–142 (In Russian) | MR
[5] Zhabko A. P., Provotorov V. V., Balaban O. R., “Stabilization of weak solutions of parabolic systems with distributed parameters on the graph”, Vestnik of Saint Petersburg University. Applied Mathematics. Computer Science. Control Processes, 15:2 (2019), 187–198 | DOI | MR
[6] Zhabko A. P., Shindyapin A. I., Provotorov V. V., “Stability of weak solutions of parabolic systems with distributed parameters on the graph”, Vestnik of Saint Petersburg University. Applied Mathematics. Computer Science. Control Processes, 15:4 (2019), 457–471 | DOI | MR
[7] Podvalny S. L., Provotorov V. V., Podvalny E. S., “The controllability of parabolic systems with delay and distributed parameters on the graph”, Procedia Computer Sciense, 103 (2017), 324–330 | DOI
[8] Aleksandrov A., Aleksandrova E., Zhabko A., “Asymptotic stability conditions for certain classes of mechanical systems with time delay”, WSEAS Transactions on Systems and Control, 9 (2014), 388–397 | MR
[9] Aleksandrov A., Aleksandrova E., Zhabko A., “Asymptotic stability conditions of solutions for nonlinear multiconnected time-delay systems”, Circuits Systems and Signal Processing, 35:10 (2016), 3531–3554 | DOI | MR | Zbl
[10] Rothe E., “Warmeleitungsgleichungen mit nichtconstanten koeffizienten [Thermal conductivity equations with non-constant coefficients]”, Math. Ann., 1931, no. 104, 340–362 | DOI | MR | Zbl
[11] Volkova A. S., Provotorov V. V., “Generalized solutions and generalized eigenfunctions of boundary-value problems on a geometric graph”, Russian Mathematics, 58:3 (2014), 1–13 | DOI | MR | Zbl
[12] Provotorov V. V., “Expansion of eigenfunctions of Sturm — Liouville problem on astar graph”, Russian Mathematics, 3 (2008), 45–57 (In Russian) | DOI | MR | Zbl
[13] Provotorov V. V., Sergeev S. M., Hoang V. N., “Countable stability of a weak solution of a parabolic differential-difference system with distributed parameters on the graph”, Vestnik of Saint Petersburg University. Applied Mathematics. Computer Science. Control Processes, 16:4 (2020), 402–414 | DOI | MR
[14] Lions J.-L., Some methods of solving non-linear boundary value problems, Mir Publ, M., 1972, 587 pp. (In Russian) | MR
[15] Alexandrova I. V., Zhabko A. P., “A new LKF approach to stability analysis of linear systems with uncertain delays”, Automatica, 91 (2018), 173–178 | DOI | MR | Zbl
[16] Artemov M. A., Baranovskii E. S., Zhabko A. P., Provotorov V. V., “On a 3D model of non-isothermal flows in a pipeline network”, Journal of Physics. Conference Series, 1203 (2019), 012094 | DOI
[17] Provotorov V. V., Ryazhskikh V. I., Gnilitskaya Yu. A., “Unique weak solvability of nonlinear initial boundary value problem with distributed parameters in the netlike domain”, Vestnik of Saint Petersburg University. Applied Mathematics. Computer Science. Control Processes, 13:3 (2017), 264–277 | DOI | MR
[18] Karelin V. V., “Penalty functions in the control problem of an observation process”, Vestnik of Saint Petersburg University. Series 10. Applied Mathematics. Computer Science. Control Processes, 2010, no. 4, 109–114 (In Russian)
[19] Karelin V. V., Bure V. M., Svirkin M. V., “The generalized model of information dissemination in continuous time”, Vestnik of Saint Petersburg University. Applied Mathematics. Computer Science. Control Processes, 13:1 (2017), 74–80 (In Russian) | DOI | MR
[20] Veremey E. I., Sotnikova M. V., “Plasma stabilization by prediction with stable linear approximation”, Vestnik of Saint Petersburg University. Series 10. Applied Mathematics. Computer Science. Control Processes, 2011, no. 1, 116–133 (In Russian)
[21] Kamachkin A. M., Potapov D. K., Yevstafyeva V. V., “Existence of periodic modes in automatic control system with a three-position relay”, Intern. Journal Control, 93:4 (2020), 763–770 | DOI | MR | Zbl
[22] Kamachkin A. M., Potapov D. K., Yevstafyeva V. V., “On uniqueness and properties of periodic solution of second-order nonautonomous system with discontinuous nonlinearity”, J. Dyn. Control Syst., 23:4 (2017), 825–837 | DOI | MR | Zbl
[23] Provotorov V. V., Sergeev S. M., Part A. A., “Solvability of hyperbolic systems with distributed parameters on the graph in the weak formulation”, Vestnik of Saint Petersburg University. Applied Mathematics. Computer Science. Control Processes, 14:1 (2019), 107–117 | DOI | MR
[24] Krasnov S., Zotova E., Sergeev S., Krasnov A., Draganov M., “Stochastic algorithms in multimodal 3PL segment for the digital environment”, Conference 1, IOP Conference Series: Materials Science and Engineering, 618, 2019 | DOI
[25] Krasnov S., Sergeev S., Zotova E., Grashchenko N., “Algorithm of optimal management for the efficient use of energy resources”, E3S Web of Conferences, 110 (2019), 02052 | DOI
[26] Sergeev S., Kirillova T., “Information support for trade with the use of a conversion funnel”, IOP Conference Series: Materials Science and Engineering, 666:012064 (2019) | DOI