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Titlebook: A Direct Method for Parabolic PDE Constrained Optimization Problems; Andreas Potschka Book 2014 Springer Fachmedien Wiesbaden 2014 nonline

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Optimal control of a Simulated Moving Bed procession. This book is suitable for an academic audience in the field of social sciences, such as applied anthropology, as well as ecologists, government officials, environmentalists, and citizens who are interested978-981-19-0458-5978-981-19-0456-1
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1616-2994 or dynamic optimization problems constrained by nonlinear, possibly time-periodic, parabolic partial differential equations. In contrast to indirect methods, this approach automatically computes adjoint derivatives without requiring the user to formulate adjoint equations, which can be time-consumin
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Book 2014olic partial differential equations. In contrast to indirect methods, this approach automatically computes adjoint derivatives without requiring the user to formulate adjoint equations, which can be time-consuming and error-prone. The author describes and analyzes in detail a globalized inexact Sequ
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Javier Calatrava,Alberto Garridothe critical constants which characterize convergence. We finally present how these results can be extended to global inexact SQP methods. We present efficient numerical solution techniques of the resulting sequence of Quadratic Programming Problems (QPs) in Chapters 8 and 9.
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A. C. Cassoni,R. Gómez-García,M. Pintadonsion. In Section 11.1 we discuss why we have decided to develop the method in a stand-alone parallel form and outline which programming paradigms have proved to be useful in the development of MUSCOP. Afterwards we explain the orchestration of the different software components in Section 11.2.
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