Deterministic and Stochastic Optimal Control and Inverse Problems

Deterministic and Stochastic Optimal Control and Inverse Problems
Title Deterministic and Stochastic Optimal Control and Inverse Problems PDF eBook
Author Baasansuren Jadamba
Publisher CRC Press
Pages 378
Release 2021-12-15
Genre Computers
ISBN 1000511758

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Inverse problems of identifying parameters and initial/boundary conditions in deterministic and stochastic partial differential equations constitute a vibrant and emerging research area that has found numerous applications. A related problem of paramount importance is the optimal control problem for stochastic differential equations. This edited volume comprises invited contributions from world-renowned researchers in the subject of control and inverse problems. There are several contributions on optimal control and inverse problems covering different aspects of the theory, numerical methods, and applications. Besides a unified presentation of the most recent and relevant developments, this volume also presents some survey articles to make the material self-contained. To maintain the highest level of scientific quality, all manuscripts have been thoroughly reviewed.

Trotter-Kato Approximations of Stochastic Differential Equations in Infinite Dimensions and Applications

Trotter-Kato Approximations of Stochastic Differential Equations in Infinite Dimensions and Applications
Title Trotter-Kato Approximations of Stochastic Differential Equations in Infinite Dimensions and Applications PDF eBook
Author T. E. Govindan
Publisher Springer Nature
Pages 321
Release
Genre
ISBN 3031427912

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Data-driven Models in Inverse Problems

Data-driven Models in Inverse Problems
Title Data-driven Models in Inverse Problems PDF eBook
Author Tatiana A. Bubba
Publisher Walter de Gruyter GmbH & Co KG
Pages 508
Release 2024-11-18
Genre Mathematics
ISBN 3111251233

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Advances in learning-based methods are revolutionizing several fields in applied mathematics, including inverse problems, resulting in a major paradigm shift towards data-driven approaches. This volume, which is inspired by this cutting-edge area of research, brings together contributors from the inverse problem community and shows how to successfully combine model- and data-driven approaches to gain insight into practical and theoretical issues.

Discrete–Time Stochastic Control and Dynamic Potential Games

Discrete–Time Stochastic Control and Dynamic Potential Games
Title Discrete–Time Stochastic Control and Dynamic Potential Games PDF eBook
Author David González-Sánchez
Publisher Springer Science & Business Media
Pages 81
Release 2013-09-20
Genre Science
ISBN 331901059X

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​There are several techniques to study noncooperative dynamic games, such as dynamic programming and the maximum principle (also called the Lagrange method). It turns out, however, that one way to characterize dynamic potential games requires to analyze inverse optimal control problems, and it is here where the Euler equation approach comes in because it is particularly well–suited to solve inverse problems. Despite the importance of dynamic potential games, there is no systematic study about them. This monograph is the first attempt to provide a systematic, self–contained presentation of stochastic dynamic potential games.

Well-Posed Nonlinear Problems

Well-Posed Nonlinear Problems
Title Well-Posed Nonlinear Problems PDF eBook
Author Mircea Sofonea
Publisher Springer Nature
Pages 410
Release 2023-11-28
Genre Mathematics
ISBN 3031414160

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This monograph presents an original method to unify the mathematical theories of well-posed problems and contact mechanics. The author uses a new concept called the Tykhonov triple to develop a well-posedness theory in which every convergence result can be interpreted as a well-posedness result. This will be useful for studying a wide class of nonlinear problems, including fixed-point problems, inequality problems, and optimal control problems. Another unique feature of the manuscript is the unitary treatment of mathematical models of contact, for which new variational formulations and convergence results are presented. Well-Posed Nonlinear Problems will be a valuable resource for PhD students and researchers studying contact problems. It will also be accessible to interested researchers in related fields, such as physics, mechanics, engineering, and operations research.

Optimal Control and Estimation

Optimal Control and Estimation
Title Optimal Control and Estimation PDF eBook
Author Robert F. Stengel
Publisher Courier Corporation
Pages 674
Release 2012-10-16
Genre Mathematics
ISBN 0486134814

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Graduate-level text provides introduction to optimal control theory for stochastic systems, emphasizing application of basic concepts to real problems. "Invaluable as a reference for those already familiar with the subject." — Automatica.

Inverse Problems in Engineering Mechanics III

Inverse Problems in Engineering Mechanics III
Title Inverse Problems in Engineering Mechanics III PDF eBook
Author G.S. Dulikravich
Publisher Elsevier
Pages 433
Release 2001-11-20
Genre Computers
ISBN 0080535143

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Inverse Problems are found in many areas of engineering mechanics and there are many successful applications e.g. in non-destructive testing and characterization of material properties by ultrasonic or X-ray techniques, thermography, etc. Generally speaking, inverse problems are concerned with the determination of the input and the characteristics of a system, given certain aspects of its output. Mathematically, such problems are ill-posed and have to be overcome through development of new computational schemes, regularization techniques, objective functionals, and experimental procedures. This volume contains a selection of peer-reviewed papers presented at the International Symposium on Inverse Problems in Engineering Mechanics (ISIP2001), held in February of 2001 in Nagano, Japan, where recent development in inverse problems in engineering mechanics and related topics were discussed. The following general areas in inverse problems in engineering mechanics were the subjects of the ISIP2001: mathematical and computational aspects of inverse problems, parameter or system identification, shape determination, sensitivity analysis, optimization, material property characterization, ultrasonic non-destructive testing, elastodynamic inverse problems, thermal inverse problems, and other engineering applications. These papers can provide a state-of-the-art review of the research on inverse problems in engineering mechanics.