
A Relaxation-Based Approach to Optimal Control of Hybrid and Switched Systems
A Practical Guide for Engineers
Vadim Azhmyakov(Author)
Butterworth-Heinemann (Publisher)
Published on 20. February 2019
Book
Paperback/Softback
434 pages
978-0-12-814788-7 (ISBN)
Description
A Relaxation Based Approach to Optimal Control of Hybrid and Switched Systems proposes a unified approach to effective and numerically tractable relaxation schemes for optimal control problems of hybrid and switched systems. The book gives an overview of the existing (conventional and newly developed) relaxation techniques associated with the conventional systems described by ordinary differential equations. Next, it constructs a self-contained relaxation theory for optimal control processes governed by various types (sub-classes) of general hybrid and switched systems. It contains all mathematical tools necessary for an adequate understanding and using of the sophisticated relaxation techniques.
In addition, readers will find many practically oriented optimal control problems related to the new class of dynamic systems. All in all, the book follows engineering and numerical concepts. However, it can also be considered as a mathematical compendium that contains the necessary formal results and important algorithms related to the modern relaxation theory.
In addition, readers will find many practically oriented optimal control problems related to the new class of dynamic systems. All in all, the book follows engineering and numerical concepts. However, it can also be considered as a mathematical compendium that contains the necessary formal results and important algorithms related to the modern relaxation theory.
More details
Language
English
Place of publication
Woburn
United States
Publishing group
Elsevier - Health Sciences Division
Target group
Professional and scholarly
Academic Researchers and PhD candidates from Electrical Engineering or / and Applied Mathematics faculties (technical and regular Universities, academic Research Centers)
R&D departments of electrical / electronic companies (research engineers, developers)
R&D departments of aerospace engineering companies (research engineers, developers)
Books can also be included into a PhD qualification program in Control Engineering, Applied Mathematics, advanced Computer Science and Mathematical Economics
Product notice
Paperback (trade)
Dimensions
Height: 235 mm
Width: 191 mm
Thickness: 22 mm
Weight
743 gr
ISBN-13
978-0-12-814788-7 (9780128147887)
Copyright in bibliographic data and cover images is held by Nielsen Book Services Limited or by the publishers or by their respective licensors: all rights reserved.
Schweitzer Classification
Other editions
Additional editions

Vadim Azhmyakov
A Relaxation-Based Approach to Optimal Control of Hybrid and Switched Systems
A Practical Guide for Engineers
E-Book
02/2019
Butterworth-Heinemann
€109.00
Available for download
Person
Vadim Azhmyakov graduated in 1989 from the Department of Applied Mathematics of the Technical University of Moscow. He gained a Ph.D. in Applied Mathematics in 1994, and a Postdoc in Mathematics in 2006 of the EMA University of Greifswald, Greifswald, Germany. He has experience in Applied Mathematics: optimal control, optimization, numerical methods nonlinear analysis, convex analysis, differential equations and differential inclusions, engineering mathematics; and Control Engineering: hybrid and switched dynamic systems, systems optimization, robust control, control over networks, multiagent systems, robot control, Lagrange mechanics, stochastic dynamics, smart grids, energy management systems.
Author
Vadim Azhmyakov
Department of Mathematical Sciences,
Universidad EAFIT,
Medellin, Republic of Colombia
Department of Mathematical Sciences,
Universidad EAFIT,
Medellin, Republic of Colombia
Content
1. Introduction
2. Mathematical Background
3. Convex Programming
4. Short Course in Continuous - Time Dynamic Systems and Control
5. Relaxation Schemes in Conventional Optimal Control and Optimization Theory
6. Optimal Control of Hybrid and Switched Systems
7. Numerically Tractable Relaxation Schemes for Optimal Control of Hybrid and Switched Systems
8. Applications of the Relaxation Based Approach
2. Mathematical Background
3. Convex Programming
4. Short Course in Continuous - Time Dynamic Systems and Control
5. Relaxation Schemes in Conventional Optimal Control and Optimization Theory
6. Optimal Control of Hybrid and Switched Systems
7. Numerically Tractable Relaxation Schemes for Optimal Control of Hybrid and Switched Systems
8. Applications of the Relaxation Based Approach