Preprint No. MPIMD/13-16

Title: Adaptive discontinuous Galerkin methods for state constrained optimal control problems governed by convection diffusion equations

Author(s): Hamdullah Yücel, Peter Benner

Email: yuecel@mpi-magdeburg.mpg.de

Date: 2013-09-19

Abstract:

We study a posteriori error estimates for the numerical approximations of state constrained optimal control problems governed by convection diffusion equations, regularized by Moreau-Yosida and Lavrentiev-based techniques. The upwind Symmetric Interior Penalty Galerkin (SIPG) method is used as a discontinuous Galerkin (DG) discretization method. We derive different residual-based error indicators for each regularization technique due to the regularity issues. An adaptive mesh refinement indicated by a posteriori error estimates is applied. Numerical examples are presented to illustrate the effectiveness of the adaptivity for both regularization techniques.

BibTeX:

@TECHREPORT{MPIMD13-16,
author = {Hamdullah Yücel and Peter Benner},
title = {Adaptive discontinuous Galerkin methods for state constrained optimal control problems governed by convection diffusion equations},
number = {MPIMD/13-16},
month = sep,
year = 2013,
institution = {Max Planck Institute Magdeburg},
type = {Preprint},
note = {Available from \url{http://www.mpi-magdeburg.mpg.de/preprints/}},
}


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