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Functional Analysis, Calculus of Variations and Optimal Control

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  • A self-contained in-depth introduction to functional analysis and the related fields of optimal control and the calculus of variations that is unique in its coverage
  • Written in a lively and engaging style by a leading specialist
  • Includes a short course on optimization and nonsmooth analysis
  • Gives complete proofs of advanced versions of the Pontryagin maximum principle that appear for the first time in a textbook
  • Contains hundreds of exercises of an original nature, with solutions or hints in many cases
  • Includes supplementary material: sn.pub/extras

Part of the book series: Graduate Texts in Mathematics (GTM, volume 264)

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Table of contents (26 chapters)

  1. Front Matter

    Pages I-XIV
  2. Functional Analysis

    1. Front Matter

      Pages 1-1
    2. Normed Spaces

      • Francis Clarke
      Pages 3-25
    3. Convex sets and functions

      • Francis Clarke
      Pages 27-46
    4. Weak topologies

      • Francis Clarke
      Pages 47-58
    5. Convex analysis

      • Francis Clarke
      Pages 59-74
    6. Banach spaces

      • Francis Clarke
      Pages 75-103
    7. Lebesgue spaces

      • Francis Clarke
      Pages 105-131
    8. Hilbert spaces

      • Francis Clarke
      Pages 133-155
    9. Additional exercises for Part I

      • Francis Clarke
      Pages 157-169
  3. Optimization and Nonsmooth Analysis

    1. Front Matter

      Pages 171-171
    2. Optimization and multipliers

      • Francis Clarke
      Pages 173-191
    3. Generalized gradients

      • Francis Clarke
      Pages 193-225
    4. Proximal analysis

      • Francis Clarke
      Pages 227-254
    5. Invariance and monotonicity

      • Francis Clarke
      Pages 255-272
    6. Additional exercises for Part II

      • Francis Clarke
      Pages 273-283
  4. Calculus of Variations

    1. Front Matter

      Pages 285-285
    2. The classical theory

      • Francis Clarke
      Pages 287-305
    3. Nonsmooth extremals

      • Francis Clarke
      Pages 307-318
    4. Absolutely continuous solutions

      • Francis Clarke
      Pages 319-334

About this book

Functional analysis owes much of its early impetus to problems that arise in the calculus of variations. In turn, the methods developed there have been applied to optimal control, an area that also requires new tools, such as nonsmooth analysis. This self-contained textbook gives a complete course on all these topics. It is written by a leading specialist who is also a noted expositor.

This book provides a thorough introduction to functional analysis and includes many novel elements as well as the standard topics. A short course on nonsmooth analysis and geometry completes the first half of the book whilst the second half concerns the calculus of variations and optimal control. The author provides a comprehensive course on these subjects, from their inception through to the present. A notable feature is the inclusion of recent, unifying developments on regularity, multiplier rules, and the Pontryagin maximum principle, which appear here for the first time in a textbook. Othermajor themes include existence and Hamilton-Jacobi methods.

The many substantial examples, and the more than three hundred exercises, treat such topics as viscosity solutions, nonsmooth Lagrangians, the logarithmic Sobolev inequality, periodic trajectories, and systems theory. They also touch lightly upon several fields of application: mechanics, economics, resources, finance, control engineering.

Functional Analysis, Calculus of Variations and Optimal Control is intended to support several different courses at the first-year or second-year graduate level, on functional analysis, on the calculus of variations and optimal control, or on some combination. For this reason, it has been organized with customization in mind. The text also has considerable value as a reference. Besides its advanced results in the calculus of variations and optimal control, its polished presentation of certain other topics (for example convex analysis, measurable selections, metric regularity, and nonsmooth analysis) will be appreciated by researchers in these and related fields.

Reviews

From the reviews:

“The book is composed of four parts … . A nice feature of this graduate-level textbook is that the book is sprinkled with a number of exercises including additional ones for each part of the book, notes, solutions, and hints and hence ideally suitable for adaptation for a first/second level graduate course in control theory. … the book, written by a well-known expert in control theory, is an excellent lasting addition to the field of calculus of variations and optimal control.” (D. Subbaram Naidu, Amazon.com, May, 2013)

“Each of the four parts the book, or selections of chapters, can be used for courses on different topics. … Written by an expert in the field, with outstanding contributions to nonsmooth analysis, calculus of variations and optimal control, the present book, written in a live but rigorous style, will help the interested people to a smooth approach and a better understanding of this difficult subject in mathematics, both pure and applied, which is optimal control.” (S. Cobzaş, Studia Universitatis Babes-Bolyai, Mathematica, Vol. 58 (2), 2013)

"This new book stands out because it combines, within a single publication, treatment of major themes of optimal control theory with coverage of areas of functional analysis, convex analysis, the calculus of variations and nonsmooth analysis oriented towards aspects of these subjects having special relevance to control. But to describe it as a self-contained text book for a graduate level course in optimal control theory is to sell it short. This is because the parts preceding the optimal control chapters, on functional analysis, optimization and nonsmooth analysis, and the calculus of variations all to a large extent stand alone, and so it provides suitable material for several courses, besides one on optimal control."

"The final section covers, for the first time in book form, the most recent important advances in the theory of necessary conditions."

"The quality of exposition is extremely high. Great emphasis has been placed on accessibility, with much motivating discussion and a very large number of exercises and worked examples."

Reviewed by Richard B. Vinter (Mathematical Reviews)

In summary, this book is a monumental work collecting an impressive amount of technical material ranging from historical results of calculus of variations to modern advances in nonsmooth analysis and optimization. As such, the book as a whole cannot be considered as a textbook: its scope is too broad, and some developments (especially in Part IV) seem to be too technical. However, on pages ix-x the author suggests various roadmaps for course adoption, at various levels, based on his own teaching experience. Moreover, the author's lively writing style very often provides additional insight and intuition behind the key technical concepts. This is why, in this reviewer's opinion, this book is a central, and unprecedented reference in the field of optimization and optimal control.

Didier Henrion (LASS, Toulouse)

Authors and Affiliations

  • Institut Camille Jordan, Université Claude Bernard Lyon 1 Institut Camille Jordan, Villeurbanne, France

    Francis Clarke

Bibliographic Information

Buy it now

Buying options

eBook USD 69.99
Price excludes VAT (USA)
  • Available as EPUB and PDF
  • Read on any device
  • Instant download
  • Own it forever
Softcover Book USD 84.99
Price excludes VAT (USA)
  • Compact, lightweight edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info
Hardcover Book USD 89.95
Price excludes VAT (USA)
  • Durable hardcover edition
  • Dispatched in 3 to 5 business days
  • Free shipping worldwide - see info

Tax calculation will be finalised at checkout

Other ways to access