
- 178 pages
- English
- ePUB (mobile friendly)
- Available on iOS & Android
About this book
Modelling and Precision Control of Systems with Hysteresis covers the piezoelectric and other smart materials that are increasingly employed as actuators in precision engineering, from scanning probe microscopes (SPMs) in life science and nano-manufacturing, to precision active optics in astronomy, including space laser communication, space imaging cameras, and the micro-electro-mechanical systems (MEMS). As smart materials are known for having hysteretic dynamics, it is necessary to overcome issues with a broadband range of frequencies.This book offers both the mathematical tools for modeling the systems and applications, including complete case studies and source code for the experiments to help both academics and researchers in the industry to achieve precision in the control of Smart Actuator systems.- Provides a comprehensive identification of typical complex hysteresis- Presents control algorithm design for systems with hysteresis- Contain numerous real life examples and two complete case studies- Source code to examples are provided
Frequently asked questions
- Essential is ideal for learners and professionals who enjoy exploring a wide range of subjects. Access the Essential Library with 800,000+ trusted titles and best-sellers across business, personal growth, and the humanities. Includes unlimited reading time and Standard Read Aloud voice.
- Complete: Perfect for advanced learners and researchers needing full, unrestricted access. Unlock 1.4M+ books across hundreds of subjects, including academic and specialized titles. The Complete Plan also includes advanced features like Premium Read Aloud and Research Assistant.
Please note we cannot support devices running on iOS 13 and Android 7 or earlier. Learn more about using the app.
Information
Table of contents
- Cover image
- Title page
- Table of Contents
- Copyright
- Preface
- Acknowledgments
- 1: Introduction
- 2: Fundamentals of Systems with Hysteresis
- 3: Hysteresis Modeling in Smart Actuators
- 4: Comprehensive Modeling of Multifield Hysteretic Dynamics
- 5: Control Approaches for Systems with Hysteresis
- 6: Case Study of a Piezoelectric Steering Platform
- 7: Case Study of Active Vibration Isolation
- 8: Conclusions
- Appendix A
- Index