Semiconcave Functions, Hamilton-Jacobi Equations, and Optimal Control (Progress in Nonlinear Differential Equations and Their Appli)

1 edition

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September 28, 2024 | History

Semiconcave Functions, Hamilton-Jacobi Equations, and Optimal Control (Progress in Nonlinear Differential Equations and Their Appli)

1 edition

Semiconcavity is a natural generalization of concavity that retains most of the good properties known in convex analysis, but arises in a wider range of applications. This text is the first comprehensive exposition of the theory of semiconcave functions, and of the role they play in optimal control and Hamilton–Jacobi equations. The first part covers the general theory, encompassing all key results and illustrating them with significant examples. The latter part is devoted to applications concerning the Bolza problem in the calculus of variations and optimal exit time problems for nonlinear control systems. The exposition is essentially self-contained since the book includes all prerequisites from convex analysis, nonsmooth analysis, and viscosity solutions. A central role in the present work is reserved for the study of singularities. Singularities are first investigated for general semiconcave functions, then sharply estimated for solutions of Hamilton–Jacobi equations, and finally analyzed in connection with optimal trajectories of control systems. Researchers in optimal control, the calculus of variations, and partial differential equations will find this book useful as a state-of-the-art reference for semiconcave functions. Graduate students will profit from this text as it provides a handy—yet rigorous—introduction to modern dynamic programming for nonlinear control systems.

Publish Date
Publisher
Birkhäuser Boston
Language
English
Pages
306

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Previews available in: English

Book Details


First Sentence

"The purpose of this chapter is to outline some of the main topics of the book through the analysis of a simple problem in the calculus of variations."

Classifications

Library of Congress
QA1-939, QA370-380

The Physical Object

Format
Paperback
Number of pages
306
Dimensions
9.2 x 6.1 x 0.5 inches
Weight
1 pounds

Edition Identifiers

Open Library
OL8074815M
Internet Archive
semiconcavefunct00cann
ISBN 10
0817643362
ISBN 13
9780817643362
Goodreads
2462202

Work Identifiers

Work ID
OL19901509W

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History

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September 28, 2024 Edited by MARC Bot import existing book
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April 29, 2008 Created by an anonymous user Imported from amazon.com record