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  1. Nonlinear Differential Equations and Applications NoDEA
  2. Nonlinear Differential Equations and Applications NoDEA : Volume 21
  3. Nonlinear Differential Equations and Applications NoDEA : Volume 21, Issue 5, October 2014
  4. Boundary optimal feedback controller for time-periodic Stokes–Oseen flows
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Nonlinear Differential Equations and Applications NoDEA : Volume 23
Nonlinear Differential Equations and Applications NoDEA : Volume 22
Nonlinear Differential Equations and Applications NoDEA : Volume 21
Nonlinear Differential Equations and Applications NoDEA : Volume 21, Issue 6, December 2014
Nonlinear Differential Equations and Applications NoDEA : Volume 21, Issue 5, October 2014
Positive solutions for a modified Leslie–Gower prey–predator model with Crowley–Martin functional responses
Global attractor for a semilinear strongly degenerate parabolic equation on $${\mathbb{R}^N}$$ R N
Symplectic and contact properties of the Mañé critical value of the universal cover
Boundary optimal feedback controller for time-periodic Stokes–Oseen flows
Existence of solutions of sublinear elliptic systems with quadratic growth in the gradient
A wave equation with structural damping and nonlinear memory
Nonlinear Differential Equations and Applications NoDEA : Volume 21, Issue 4, August 2014
Nonlinear Differential Equations and Applications NoDEA : Volume 21, Issue 3, June 2014
Nonlinear Differential Equations and Applications NoDEA : Volume 21, Issue 2, April 2014
Nonlinear Differential Equations and Applications NoDEA : Volume 21, Issue 1, February 2014
Nonlinear Differential Equations and Applications NoDEA : Volume 20
Nonlinear Differential Equations and Applications NoDEA : Volume 19
Nonlinear Differential Equations and Applications NoDEA : Volume 18
Nonlinear Differential Equations and Applications NoDEA : Volume 17
Nonlinear Differential Equations and Applications NoDEA : Volume 16
Nonlinear Differential Equations and Applications NoDEA : Volume 15
Nonlinear Differential Equations and Applications NoDEA : Volume 14
Nonlinear Differential Equations and Applications NoDEA : Volume 13
Nonlinear Differential Equations and Applications NoDEA : Volume 12
Nonlinear Differential Equations and Applications NoDEA : Volume 11
Nonlinear Differential Equations and Applications NoDEA : Volume 10
Nonlinear Differential Equations and Applications NoDEA : Volume 9
Nonlinear Differential Equations and Applications NoDEA : Volume 8
Nonlinear Differential Equations and Applications NoDEA : Volume 7
Nonlinear Differential Equations and Applications NoDEA : Volume 6
Nonlinear Differential Equations and Applications NoDEA : Volume 5
Nonlinear Differential Equations and Applications NoDEA : Volume 4

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Boundary optimal feedback controller for time-periodic Stokes–Oseen flows

Content Provider SpringerLink
Author Liu, Hanbing
Copyright Year 2014
Abstract This work considered the Dirichlet boundary optimal control of time-periodic Stokes–Oseen equations. The existence of optimal solution and maximum principle are obtained without assuming that the normal component of the control is equal to zero. Moreover, we get the regularity result of the optimal solution via the Euler–Lagrange system. The existence of solution to the HJB equation is proved. The feedback form of the optimal controller is given, and with this feedback controller, we can get for the solution to the periodic Navier–Stokes equations the property of continuous dependence on the outer force term.
Ending Page 735
Page Count 27
Starting Page 709
File Format PDF
ISSN 10219722
e-ISSN 14209004
Journal Nonlinear Differential Equations and Applications NoDEA
Issue Number 5
Volume Number 21
Language English
Publisher Springer Basel
Publisher Date 2014-01-22
Publisher Place Basel
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword Dirichlet boundary control Optimal feedback synthesis Dynamic programming method Analysis Time-periodic Stokes–Oseen equations Stokes and related (Oseen, etc.) flows Feedback controller
Content Type Text
Resource Type Article
Subject Applied Mathematics Analysis
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