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Non-Smooth and Complementarity-Based Distributed Parameter Systems - Simulation and Hierarchical Optimization (Hardcover, 1st... Non-Smooth and Complementarity-Based Distributed Parameter Systems - Simulation and Hierarchical Optimization (Hardcover, 1st ed. 2022)
Michael Hintermuller, Roland Herzog, Christian Kanzow, Michael Ulbrich, Stefan Ulbrich
R1,730 Discovery Miles 17 300 Ships in 10 - 15 working days

Many of the most challenging problems in the applied sciences involve non-differentiable structures as well as partial differential operators, thus leading to non-smooth distributed parameter systems. This edited volume aims to establish a theoretical and numerical foundation and develop new algorithmic paradigms for the treatment of non-smooth phenomena and associated parameter influences. Other goals include the realization and further advancement of these concepts in the context of robust and hierarchical optimization, partial differential games, and nonlinear partial differential complementarity problems, as well as their validation in the context of complex applications. Areas for which applications are considered include optimal control of multiphase fluids and of superconductors, image processing, thermoforming, and the formation of rivers and networks. Chapters are written by leading researchers and present results obtained in the first funding phase of the DFG Special Priority Program on Nonsmooth and Complementarity Based Distributed Parameter Systems: Simulation and Hierarchical Optimization that ran from 2016 to 2019.

Optimization and Control for Partial Differential Equations - Uncertainty quantification, open and closed-loop control, and... Optimization and Control for Partial Differential Equations - Uncertainty quantification, open and closed-loop control, and shape optimization (Hardcover)
Roland Herzog, Matthias Heinkenschloss, Dante Kalise, Georg Stadler, Emmanuel Trelat
R4,695 R4,117 Discovery Miles 41 170 Save R578 (12%) Ships in 10 - 15 working days

This book highlights new developments in the wide and growing field of partial differential equations (PDE)-constrained optimization. Optimization problems where the dynamics evolve according to a system of PDEs arise in science, engineering, and economic applications and they can take the form of inverse problems, optimal control problems or optimal design problems. This book covers new theoretical, computational as well as implementation aspects for PDE-constrained optimization problems under uncertainty, in shape optimization, and in feedback control, and it illustrates the new developments on representative problems from a variety of applications.

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