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Buch, Englisch, 310 Seiten, Book, Format (B × H): 155 mm x 235 mm
Reihe: Microtechnology and MEMS
Modeling, Control and Estimation Aspects
Buch, Englisch, 310 Seiten, Book, Format (B × H): 155 mm x 235 mm
Reihe: Microtechnology and MEMS
ISBN: 978-3-642-24045-4
Verlag: Springer
This book reflects new developments in the modeling and control of piezoelectric cantilevers. The main nonlinearities (hysteresis and creep) of these actuators are explained from a physical point of view and introduced into the modeling through operators and systems. The achieved models are adapted and used for the synthesis of classical (PID…) and advanced control schemes and laws. Another important aim of the control part in this book is the feed forward control which is of great interest for linearization and for damping vibration or for performances improvement when no sensor is available for feedback. Finally, the last part addresses the measurement techniques and integration for piezoelectric actuators. The concept of self-sensing and the use of observer techniques are highlighted, emphasizing the close relation between the nonlinearities and the reliability of the provided measurement. This book supplies practical tools for modeling, control and signal measurement of piezoelectric cantilevers. Numercial examples, identification and implementation procedures for experiments are provided. Finally, the appendices provide the tools to get familiar with the employed control techniques.
Zielgruppe
Research
Autoren/Hrsg.
Fachgebiete
Weitere Infos & Material
Part-I Modeling and characterization of behavoiur.- Static linear modeling.- Dynamic linear modeling.- Static nonlinear modeling.- Dynamic nonlinear modeling.- Force modeling.- Part-II Force and bending control of piezoelectric cantilevers.- Robust position feedback control.- Robust force feedback control.- Feed forward control.- Multivariable robust feedback control.- Part-III Signals measurement and estimation in piezoelectric actuators.- Displacement measurement and estimation.- Force measurement and estimation.- Self-sensing in piezoelectric actuators.




