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Andrew J. Fleming/ Kam K. Leang:
Design Modeling and Control of Nanopositioning Systems - nuovo libroISBN: 9783319066172
Design Modeling and Control of Nanopositioning Systems: ab 149.99 € eBooks > Sachthemen & Ratgeber > Technik Springer-Verlag GmbH eBook als pdf, Springer-Verlag GmbH
ISBN: 9783319066172
; PDF; Scientific, Technical and Medical > Industrial chemistry & manufacturing technologies > Other manufa, Springer Berlin Heidelberg
2014, ISBN: 9783319066172
eBooks, eBook Download (PDF), 2014, [PU: Springer International Publishing], Springer International Publishing, 2014
2014, ISBN: 9783319066172
[ED: 2], Auflage, eBook Download (PDF), eBooks, [PU: Springer-Verlag]
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Informazioni dettagliate del libro - Design Modeling and Control of Nanopositioning Systems
EAN (ISBN-13): 9783319066172
ISBN (ISBN-10): 331906617X
Anno di pubblicazione: 2014
Editore: Springer-Verlag GmbH
Libro nella banca dati dal 2014-07-28T02:08:13+02:00 (Rome)
Pagina di dettaglio ultima modifica in 2023-10-10T21:33:01+02:00 (Rome)
ISBN/EAN: 9783319066172
ISBN - Stili di scrittura alternativi:
3-319-06617-X, 978-3-319-06617-2
Stili di scrittura alternativi e concetti di ricerca simili:
Autore del libro : fleming, andrew lea, andrew still
Titolo del libro: nano, kam, modeling control design, design systems
Dati dell'editore
Autore: Andrew J. Fleming; Kam K. Leang
Titolo: Advances in Industrial Control; Design, Modeling and Control of Nanopositioning Systems
Editore: Springer; Springer International Publishing
411 Pagine
Anno di pubblicazione: 2014-05-15
Cham; CH
Stampato / Fatto in
Lingua: Inglese
149,79 € (DE)
154,00 € (AT)
177,00 CHF (CH)
Available
XVI, 411 p. 261 illus., 180 illus. in color.
EA; E107; eBook; Nonbooks, PBS / Technik/Elektronik, Elektrotechnik, Nachrichtentechnik; Regelungstechnik; Verstehen; Damping Control; Feed Forward Control; Flexure Design; Hysteresis; Nanopositioning; Piezoelectric Actuators; Position Sensors; Precision Motion Control; Scanning Probe Microscopes; Tracking Control; B; Control and Systems Theory; Mechatronics; Manufacturing, Machines, Tools, Processes; Industrial and Production Engineering; Control and Systems Theory; Mechatronics; Machines, Tools, Processes; Industrial and Production Engineering; Engineering; Elektronik; Maschinenbau; Fertigungstechnik und Ingenieurwesen; BB
Covering the complete design cycle of nanopositioning systems, this is the first comprehensive text on the topic. The book first introduces concepts associated with nanopositioning stages and outlines their application in such tasks as scanning probe microscopy, nanofabrication, data storage, cell surgery and precision optics. Piezoelectric transducers, employed ubiquitously in nanopositioning applications are then discussed in detail including practical considerations and constraints on transducer response. The reader is then given an overview of the types of nanopositioner before the text turns to the in-depth coverage of mechanical design including flexures, materials, manufacturing techniques, and electronics. This process is illustrated by the example of a high-speed serial-kinematic nanopositioner. Position sensors are then catalogued and described and the text then focuses on control.
Several forms of control are treated: shunt control, feedback control, force feedback control and feedforward control (including an appreciation of iterative learning control). Performance issues are given importance as are problems limiting that performance such as hysteresis and noise which arise in the treatment of control and are then given chapter-length attention in their own right. The reader also learns about cost functions and other issues involved in command shaping, charge drives and electrical considerations. All concepts are demonstrated experimentally including by direct application to atomic force microscope imaging.
Design, Modeling and Control of Nanopositioning Systems will be of interest to researchers in mechatronics generally and in control applied to atomic force microscopy and other nanopositioning applications. Microscope developers and mechanical designers of nanopositioning devices will find the text essential reading.
Introduction.- Piezoelectric Transducers.- Types of Nanopositioners.- Mechanical Design: Flexure-based Nanopositioners.- Position Sensors.- Shunt Control.- Feedback Control.- Force Feedback Control.- Feedforward Control.- Command Shaping.- Hysteresis Modeling and Control.- Charge Drives.- Noise in Nanopositioning Systems.- Electrical Considerations.
Enriches understanding of precision control theory
Explains the complete process of nanopositioning control including practical difficulties and their solution
Reinforces basic principles with experimental application in atomic force microscope
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