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Advanced Control of Piezoelectic Micro-/Nano-Positioning Systems

Englisch · Fester Einband

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Beschreibung

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This book explores emerging methods and algorithms that enable precise control of micro-/nano-positioning systems. The text describes three control strategies: hysteresis-model-based feedforward control and hysteresis-model-free feedback control based on and free from state observation. Each paradigm receives dedicated attention within a particular part of the text.
Readers are shown how to design, validate and apply a variety of new control approaches in micromanipulation: hysteresis modelling, discrete-time sliding-mode control and model-reference adaptive control. Experimental results are provided throughout and build up to a detailed treatment of practical applications in the fourth part of the book. The applications focus on control of piezoelectric grippers.
Advanced Control of Piezoelectric Micro-/Nano-Positioning Systems will assist academic researchers and practising control and mechatronics engineers interested in suppressing sources of nonlinearity such as hysteresis and drift when combining position and force control of precision systems with piezoelectric actuation.

Inhaltsverzeichnis

Introduction.- Part I Hysteresis Model-Based Feedforward Control.- Feedforward Control Based on an Inverse Hysteresis Model.- Feedforward Control without Modeling Inverse Hysteresis.- Part II Hysteresis-Model-Free, State-Observer-Based Feedback Control.- Model Predictive Discrete-Time Sliding-Mode Control.- Model Predictive Output Integral Discrete-Time Sliding-Mode Control.- Part III Hysteresis-Model-Free, State-Observer-Free Feedback Control.- Digital Sliding-Mode Control of Second-Order Systems.- Digital Sliding-Mode Control of High-Order System.- Digital Sliding-Mode Prediction Control.- Model-Reference Adaptive Control with Perturbation Estimation.- Part IV Applications to Micromanipulation.- Adaptive Impedance Control of Piezoelectric Microgripper.- Position/Force-Switching Control of a Miniature Gripper. Glossary.

Über den Autor / die Autorin

Prof. Qingsong Xu has been working in the area of micro-/nano-mechatronics and robotics including design and precision control of micro/nano-positioning systems for about 10 years. He has published over 130 peer-reviewed papers in journals and conferences in related domains.
Prof. Kok Kiong Tan has been working in the area of precision motion control and instrumentation, advanced process control and autotuning, and general industrial automation for over 20 years. He has published over 10 books and 400 scientific papers in related fields.

Zusammenfassung

This book explores emerging methods and algorithms that enable precise control of micro-/nano-positioning systems. The text describes three control strategies: hysteresis-model-based feedforward control and hysteresis-model-free feedback control based on and free from state observation. Each paradigm receives dedicated attention within a particular part of the text.
Readers are shown how to design, validate and apply a variety of new control approaches in micromanipulation: hysteresis modelling, discrete-time sliding-mode control and model-reference adaptive control. Experimental results are provided throughout and build up to a detailed treatment of practical applications in the fourth part of the book. The applications focus on control of piezoelectric grippers.
Advanced Control of Piezoelectric Micro-/Nano-Positioning Systems will assist academic researchers and practising control and mechatronics engineers interested in suppressing sources of nonlinearity such as hysteresis and drift when combining position and force control of precision systems with piezoelectric actuation.

Produktdetails

Autoren Kok K. Tan, Kok Kiong Tan, Qingson Xu, Qingsong Xu
Verlag Springer, Berlin
 
Sprache Englisch
Produktform Fester Einband
Erschienen 01.01.2015
 
EAN 9783319216225
ISBN 978-3-31-921622-5
Seiten 257
Abmessung 162 mm x 20 mm x 241 mm
Gewicht 582 g
Illustration XX, 257 p.
Serien Advances in Industrial Control
Advances in Industrial Control
Thema Naturwissenschaften, Medizin, Informatik, Technik > Technik > Elektronik, Elektrotechnik, Nachrichtentechnik

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