ENGLISH

Multi-stage actuation systems and control

Book information

Publisher
CRC Press/Taylor & Francis Group
Year
2019
ISBN
9781138480759, 9781351062183, 1138480754
Language
english
Format
PDF
Filesize
15 MB (16211421 bytes)
Pages
195\213
Time added
2019-04-14 09:00:00

Description

"This book is designed for academic researchers and engineering practitioners in systems and control, especially those engaged in the area of control in mechanical systems with microactuators and multi-stage actuations. The book aims at empowering readers with a clear understanding of multi-stage mechanism, different microactuators' performances, their limitations to control system performance and problems encountered in control system design and techniques for solving these problems and dealing with these limitations. Special attention is given to recently developed control techniques in three-stage systems and MEMS positioning stage. Real-world examples are given to demonstrate the control techniques such as dual-stage and three-stage systems in hard disk drives and micro XY stage in manufacturing systems"--  Read more... Abstract: "This book is designed for academic researchers and engineering practitioners in systems and control, especially those engaged in the area of control in mechanical systems with microactuators and multi-stage actuations. The book aims at empowering readers with a clear understanding of multi-stage mechanism, different microactuators' performances, their limitations to control system performance and problems encountered in control system design and techniques for solving these problems and dealing with these limitations. Special attention is given to recently developed control techniques in three-stage systems and MEMS positioning stage. Real-world examples are given to demonstrate the control techniques such as dual-stage and three-stage systems in hard disk drives and micro XY stage in manufacturing systems" Content: Mechanical Actuation Systems. High-precision Positioning Control of Dual-stage Actuation Systems. Control of Thermal Microactuator Based Dual-stage Actuation Systems. Modeling and Control of Three-stage Actuation Systems. Dual-stage System Control Considering Secondary Actuator Stroke Limitation. Saturation Control for Microactuators in Dual-stage Actuation Systems. Time Delay and Sampling Rate Effect on Control Performance of Dual-stage Actuation Systems. PZT Hysteresis Modeling and Compensation. Seeking Control of Dual-stage Actuation Systems with Trajectory Optimization. High-Frequency Vibration Control Using PZT Active Damping. Self-Sensing Actuation of Dual-stage Systems. Modeling and Control of A MEMS Micro X-Y stage Media Platform. Conclusions.

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