Nonlinear Systems: Chaos, Advanced Control and Application Perspectives
This book provides technological advancement in nonlinear dynamics and chaos and explores the fields of communication, electric vehicles, power systems, and rotational machines with centrifugal flyball governor systems. An autonomous chaotic system is explored with real and complex state variables; their projective synchronization is reported with application to secure communication. Secure communication is achieved using Masking-Modulation and Diffie-Hellman Key Exchange encryption techniques. Further, electric vehicles are a necessity for upcoming trends. To optimize the control performance of the permanent-magnet synchronous motor with different disturbances and uncertainties, a nonlinear control for the permanent-magnet synchronous motor using sliding-mode control is reported and the Cascaded PI sliding mode control technique is explored to control the chaotic behavior in electric vehicles. Chaos behavior is explored in power systems and its control is presented using higher-order sliding mode control. Comparative performances are analyzed followed by control of chaos in the Rotational Machine with Centrifugal Flyball Governor system where chaos is controlled using recursive backstepping sliding mode control. All the simulations are carried out in the MATLAB environment and reveal successful achievement of the objectives.
Researchers from academia and industry, who are working in the research areas of Nonlinear Dynamical Systems & Chaos, Electrical Engineering, Computer Science Engineering, Information Technology, Communication Engineering, and Mechanical Engineering may be the principal audiences. Also, the book will be helpful for (i) graduate or advanced undergraduate level students as a textbook or major reference book for courses such as electrical circuits, nonlinear dynamical systems, mathematical modeling, computational science, numerical simulation, and many others and (ii) postgraduate level students and young researchers in the following fields: Communication Engineering; Computer Science; Electrical and Electronic Engineering; Mechanical Engineering; Engineering Mathematics; Computational Physics.
Table of Contents
Preface
Chapter 1. Real and Complex State Variables Based Autonomous Chaotic Systems
Sugandha and Piyush Pratap Singh
Department of Electrical Engineering, National Institute of Technology Meghalaya, Shillong, Meghalaya, India
Chapter 2. Projective Synchronisation of Complex-Valued Hyperchaotic Systems and Encryption Techniques in Secure Communications
Sugandha and Piyush Pratap Singh
Department of Electrical Engineering, National Institute of Technology Meghalaya, Shillong, Meghalaya, India
Chapter 3. Chaos Control in Electric Vehicle Using Cascaded PI and PID Sliding Mode Control Techniques
Ranjan Kumar, Nathaneal Kharlukhi, Md., Tanweer Alam and Piyush Pratap Singh
Department of Electrical Engineering, National Institute of Technology Meghalaya, Shillong, India
Chapter 4. Chaos Control in Power System Using Higher Order Sliding Mode Control
Manish Kumar and Piyush Pratap Singh
Department of Electrical Engineering, National Institute of Technology Meghalaya, Shillong, India
Chapter 5. Chaos Control in the Rotational Machine with Centrifugal Flyball Governor System Using Backstepping Sliding Mode Control
Piyush Pratap Singh and Binoy Krishna Roy
Department of Electrical Engineering, National Institute of Technology Meghalaya, Shillong, Meghalaya, India
National Institute of Technology Silchar, Cachar, Assam, India
Index
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