Control Of Imperfect Nonlinear Electromechanical Large Scale Systems From Dynamics To Hardware Implementation


Download Control Of Imperfect Nonlinear Electromechanical Large Scale Systems From Dynamics To Hardware Implementation PDF/ePub or read online books in Mobi eBooks. Click Download or Read Online button to get Control Of Imperfect Nonlinear Electromechanical Large Scale Systems From Dynamics To Hardware Implementation book now. This website allows unlimited access to, at the time of writing, more than 1.5 million titles, including hundreds of thousands of titles in various foreign languages.

Download

Control Of Imperfect Nonlinear Electromechanical Large Scale Systems: From Dynamics To Hardware Implementation


Control Of Imperfect Nonlinear Electromechanical Large Scale Systems: From Dynamics To Hardware Implementation

Author: Luigi Fortuna

language: en

Publisher: World Scientific

Release Date: 2017-05-19


DOWNLOAD





This book focuses on a class of uncertain systems that are called imperfect, and shows how much systems can regularly work if an appropriate control strategy is adopted. Along with some practical well studied examples, a formalization of the models for imperfect system is considered and a control strategy is proposed. Experimental case studies on electromechanical systems are also included.New concepts, experimental innovative circuits and laboratory details allow the reader to implement at low cost the outlined strategy. Emergent topics in nonlinear device realization are emphasized with the aim to allow researchers and students to perform experiments with large scale electromechanical systems. Moreover, the possibility of using imperfections and noise to generate nonlinear strange behavior is discussed.

Control of Imperfect Nonlinear Electromechanical Large Scale Systems


Control of Imperfect Nonlinear Electromechanical Large Scale Systems

Author: Luigi Fortuna

language: en

Publisher:

Release Date: 2017


DOWNLOAD





"This book focuses on a class of uncertain systems that are called imperfect, and shows how much systems can regularly work if an appropriate control strategy is adopted. Along with some practical well studied examples, a formalization of the models for imperfect system is considered and a control strategy is proposed. Experimental case studies on electromechanical systems are also included. New concepts, experimental innovative circuits and laboratory details allow the reader to implement at low cost the outlined strategy. Emergent topics in nonlinear device realization are emphasized with the aim to allow researchers and students to perform experiments with large scale electromechanical systems. Moreover, the possibility of using imperfections and noise to generate nonlinear strange behavior is discussed."--Publisher's website.

Modeling, Analysis And Control Of Dynamical Systems With Friction And Impacts


Modeling, Analysis And Control Of Dynamical Systems With Friction And Impacts

Author: Pawel Olejnik

language: en

Publisher: #N/A

Release Date: 2017-07-07


DOWNLOAD





This book is aimed primarily towards physicists and mechanical engineers specializing in modeling, analysis, and control of discontinuous systems with friction and impacts. It fills a gap in the existing literature by offering an original contribution to the field of discontinuous mechanical systems based on mathematical and numerical modeling as well as the control of such systems. Each chapter provides the reader with both the theoretical background and results of verified and useful computations, including solutions of the problems of modeling and application of friction laws in numerical computations, results from finding and analyzing impact solutions, the analysis and control of dynamical systems with discontinuities, etc. The contents offer a smooth correspondence between science and engineering and will allow the reader to discover new ideas. Also emphasized is the unity of diverse branches of physics and mathematics towards understanding complex piecewise-smooth dynamical systems. Mathematical models presented will be important in numerical experiments, experimental measurements, and optimization problems found in applied mechanics.