Skip to content
Home/ Dynamics, Control, and Synchronization of Nonlinear Systems
Dynamics, Control, and Synchronization of Nonlinear Systems

Dynamics, Control, and Synchronization of Nonlinear Systems

No customer reviews yet ISBN 9789819810185

This book is to celebrate the contributions of Professor Joaquín Álvarez Gallegos, a pioneer in the promotion and development of dynamical systems, control and synchronization in the Mexican community. The book presents a collection of original research contributions addressing recent theoretical advances and authoritative state-of-the-art reviews on topics related to the field of Dynamics, Control and Synchronization. The chapters contained in the book are written by international experts, who have collaborated in some way with Professor Álvarez, including former MSc- and PhD students.

The book will be organized in three parts, one focusing on the analysis of complex nonlinear dynamics, including chaotic dynamics, whereas the second part is devoted to synchronization of interconnected complex systems. The final part of the book is dedicated to the control of nonlinear systems, in particular, to the design and implementation of robust control techniques, and its potential application in mechanical systems. Here typically connections with the other parts will be included and where possible illustrated by real examples.

This book is suitable for scientists, control engineers and dynamicists interested in a timely review related to the control of nonlinear systems and how this intersects to the modelling, analysis and synchronization of complex systems.

About the author

Product details

Pub dateDec 15, 2025
ISBN-109819810183
ISBN-139789819810185
LanguageEnglish
Last updated 2026-07-24 19:25
$122.97
In stock — ships in 24 hours with free tracking
Delivery by Monday, September 14, 2026
Qty
Sign in to Add to Saved list
Free delivery on orders over $35.
15-day returns. Any reason.
Secure checkout. We never store card details.

Readers who bought this also bought

More from Linear & Nonlinear Programming
See all
Multicriteria Optimization in Engineering and in the Sciences (1988)
We are rarely asked to. make decisions based on only one criterion&#x3b; most often, decisions are based on several usually confticting, criteria. In nature, if the design of a system evolves to some final, optimal state, then it must include a balance for the interaction of the system with its surroundings- certainly a design based on a variety of criteria. Furthermore, the diversity of nature's designs suggests an infinity of such optimal states. In another sense, decisions simultaneously optimize a finite number of criteria, while there is usually an infinity of optimal solutions. Multicriteria optimization provides the mathematical framework to accommodate these demands. Multicriteria optimization has its roots in mathematical economics, in particular, in consumer economics as considered by Edgeworth and Pareto. The critical question in an exchange economy concerns the "equilibrium point" at which each of N consumers has achieved the best possible deal for hirnself or herself. Ultimately, this is a collective decision in which any further gain by one consumer can occur only at the expense of at least one other consumer. Such an equilibrium concept was first introduced by Edgeworth in 1881 in his book on mathematical psychics. Today, such an optimum is variously called "Pareto optimum" (after the Italian-French welfare economist who continued and expanded Edgeworth's work), "effi. cient," "nondominated," and so on.
$177.01