The Robust Maximum Principle

The Robust Maximum Principle
Author: Anonim
Publsiher: Unknown
Total Pages: 456
Release: 2011-11-01
Genre: Electronic Book
ISBN: 0817681531

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The Robust Maximum Principle

The Robust Maximum Principle
Author: Vladimir G. Boltyanski,Alexander S. Poznyak
Publsiher: Springer Science & Business Media
Total Pages: 440
Release: 2011-11-06
Genre: Science
ISBN: 9780817681524

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Covering some of the key areas of optimal control theory (OCT), a rapidly expanding field, the authors use new methods to set out a version of OCT’s more refined ‘maximum principle.’ The results obtained have applications in production planning, reinsurance-dividend management, multi-model sliding mode control, and multi-model differential games. This book explores material that will be of great interest to post-graduate students, researchers, and practitioners in applied mathematics and engineering, particularly in the area of systems and control.

New Perspectives and Applications of Modern Control Theory

New Perspectives and Applications of Modern Control Theory
Author: Julio B. Clempner,Wen Yu
Publsiher: Springer
Total Pages: 538
Release: 2017-09-30
Genre: Technology & Engineering
ISBN: 9783319624648

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This edited monograph contains research contributions on a wide range of topics such as stochastic control systems, adaptive control, sliding mode control and parameter identification methods. The book also covers applications of robust and adaptice control to chemical and biotechnological systems. This collection of papers commemorates the 70th birthday of Dr. Alexander S. Poznyak.

Robust Output LQ Optimal Control via Integral Sliding Modes

Robust Output LQ Optimal Control via Integral Sliding Modes
Author: Leonid Fridman,Alexander Poznyak,Francisco Javier Bejarano
Publsiher: Springer
Total Pages: 150
Release: 2014-07-08
Genre: Science
ISBN: 9780817649623

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Featuring original research from well-known experts in the field of sliding mode control, this book presents new design schemes for a useful and practical optimal control with very few impractical assumptions. The results presented allow optimal control theory to grow in its applicability to real-world systems. On the cutting-edge of optimal control research, this book is an excellent resource for both graduate students and researchers in engineering, mathematics, and optimal control.

Advanced Mathematical Tools for Automatic Control Engineers Volume 2

Advanced Mathematical Tools for Automatic Control Engineers  Volume 2
Author: Alexander S. Poznyak
Publsiher: Elsevier
Total Pages: 568
Release: 2009-08-13
Genre: Technology & Engineering
ISBN: 9780080914039

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Advanced Mathematical Tools for Automatic Control Engineers, Volume 2: Stochastic Techniques provides comprehensive discussions on statistical tools for control engineers. The book is divided into four main parts. Part I discusses the fundamentals of probability theory, covering probability spaces, random variables, mathematical expectation, inequalities, and characteristic functions. Part II addresses discrete time processes, including the concepts of random sequences, martingales, and limit theorems. Part III covers continuous time stochastic processes, namely Markov processes, stochastic integrals, and stochastic differential equations. Part IV presents applications of stochastic techniques for dynamic models and filtering, prediction, and smoothing problems. It also discusses the stochastic approximation method and the robust stochastic maximum principle. Provides comprehensive theory of matrices, real, complex and functional analysis Provides practical examples of modern optimization methods that can be effectively used in variety of real-world applications Contains worked proofs of all theorems and propositions presented

Stochastic Theory and Control

Stochastic Theory and Control
Author: Bozenna Pasik-Duncan
Publsiher: Springer
Total Pages: 566
Release: 2003-07-01
Genre: Mathematics
ISBN: 9783540480228

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This volume contains almost all of the papers that were presented at the Workshop on Stochastic Theory and Control that was held at the Univ- sity of Kansas, 18–20 October 2001. This three-day event gathered a group of leading scholars in the ?eld of stochastic theory and control to discuss leading-edge topics of stochastic control, which include risk sensitive control, adaptive control, mathematics of ?nance, estimation, identi?cation, optimal control, nonlinear ?ltering, stochastic di?erential equations, stochastic p- tial di?erential equations, and stochastic theory and its applications. The workshop provided an opportunity for many stochastic control researchers to network and discuss cutting-edge technologies and applications, teaching and future directions of stochastic control. Furthermore, the workshop focused on promoting control theory, in particular stochastic control, and it promoted collaborative initiatives in stochastic theory and control and stochastic c- trol education. The lecture on “Adaptation of Real-Time Seizure Detection Algorithm” was videotaped by the PBS. Participants of the workshop have been involved in contributing to the documentary being ?lmed by PBS which highlights the extraordinary work on “Math, Medicine and the Mind: Discovering Tre- ments for Epilepsy” that examines the e?orts of the multidisciplinary team on which several of the participants of the workshop have been working for many years to solve one of the world’s most dramatic neurological conditions. Invited high school teachers of Math and Science were among the part- ipants of this professional meeting.

Geometric Methods and Optimization Problems

Geometric Methods and Optimization Problems
Author: Vladimir Boltyanski,Horst Martini,V. Soltan
Publsiher: Springer Science & Business Media
Total Pages: 438
Release: 2013-12-11
Genre: Mathematics
ISBN: 9781461553199

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VII Preface In many fields of mathematics, geometry has established itself as a fruitful method and common language for describing basic phenomena and problems as well as suggesting ways of solutions. Especially in pure mathematics this is ob vious and well-known (examples are the much discussed interplay between lin ear algebra and analytical geometry and several problems in multidimensional analysis). On the other hand, many specialists from applied mathematics seem to prefer more formal analytical and numerical methods and representations. Nevertheless, very often the internal development of disciplines from applied mathematics led to geometric models, and occasionally breakthroughs were b~ed on geometric insights. An excellent example is the Klee-Minty cube, solving a problem of linear programming by transforming it into a geomet ric problem. Also the development of convex programming in recent decades demonstrated the power of methods that evolved within the field of convex geometry. The present book focuses on three applied disciplines: control theory, location science and computational geometry. It is our aim to demonstrate how methods and topics from convex geometry in a wider sense (separation theory of convex cones, Minkowski geometry, convex partitionings, etc.) can help to solve various problems from these disciplines.

Probability on Algebraic and Geometric Structures

Probability on Algebraic and Geometric Structures
Author: Gregory Budzban,Harry Randolph Hughes,Henri Schurz
Publsiher: American Mathematical Soc.
Total Pages: 236
Release: 2016-06-29
Genre: Combinatorial geometry
ISBN: 9781470419455

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This volume contains the proceedings of the International Research Conference “Probability on Algebraic and Geometric Structures”, held from June 5–7, 2014, at Southern Illinois University, Carbondale, IL, celebrating the careers of Philip Feinsilver, Salah-Eldin A. Mohammed, and Arunava Mukherjea. These proceedings include survey papers and new research on a variety of topics such as probability measures and the behavior of stochastic processes on groups, semigroups, and Clifford algebras; algebraic methods for analyzing Markov chains and products of random matrices; stochastic integrals and stochastic ordinary, partial, and functional differential equations.