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Optimization with PDE Constraints [electronic resource] / by Michael Hinze, Rene Pinnau, Michael Ulbrich, Stefan Ulbrich.

By: Contributor(s): Material type: TextTextSeries: Mathematical Modelling: Theory and Applications ; 23Publisher: Dordrecht : Springer Netherlands, 2009Description: XII, 270 p. online resourceContent type:
  • text
Media type:
  • computer
Carrier type:
  • online resource
ISBN:
  • 9781402088391
Subject(s): Additional physical formats: Printed edition:: No titleDDC classification:
  • 515.64 23
LOC classification:
  • QA315-316
  • QA402.3
  • QA402.5-QA402.6
Online resources:
Contents:
Analytical Background and Optimality Theory -- Optimization Methods in Banach Spaces -- Discrete Concepts in PDE Constrained Optimization -- Applications.
In: Springer eBooksSummary: This book presents a modern introduction of pde constrained optimization. It provides a precise functional analytic treatment via optimality conditions and a state-of-the-art, non-smooth algorithmical framework. Furthermore, new structure-exploiting discrete concepts and large scale, practically relevant applications are presented. The main focus is on the algorithmical and numerical treatment of pde constrained optimization problems on the infinite dimensional level. A particular emphasis is on simple constraints, such as pointwise bounds on controls and states. For these practically important situations, tailored Newton- and SQP-type solution algorithms are proposed and a general convergence framework is developed. This is complemented with the numerical analysis of structure-preserving Galerkin schemes for optimization problems with elliptic and parabolic equations. Finally, along with the optimization of semiconductor devices and the optimization of glass cooling processes, two challenging applications of pde constrained optimization are presented. They demonstrate the scope of this emerging research field for future engineering applications.
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Analytical Background and Optimality Theory -- Optimization Methods in Banach Spaces -- Discrete Concepts in PDE Constrained Optimization -- Applications.

This book presents a modern introduction of pde constrained optimization. It provides a precise functional analytic treatment via optimality conditions and a state-of-the-art, non-smooth algorithmical framework. Furthermore, new structure-exploiting discrete concepts and large scale, practically relevant applications are presented. The main focus is on the algorithmical and numerical treatment of pde constrained optimization problems on the infinite dimensional level. A particular emphasis is on simple constraints, such as pointwise bounds on controls and states. For these practically important situations, tailored Newton- and SQP-type solution algorithms are proposed and a general convergence framework is developed. This is complemented with the numerical analysis of structure-preserving Galerkin schemes for optimization problems with elliptic and parabolic equations. Finally, along with the optimization of semiconductor devices and the optimization of glass cooling processes, two challenging applications of pde constrained optimization are presented. They demonstrate the scope of this emerging research field for future engineering applications.

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