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Responsive Systems for Active Vibration Control - Proceedings of the NATO Advanced Study Institute, Held in Brussels, Belgium,... Responsive Systems for Active Vibration Control - Proceedings of the NATO Advanced Study Institute, Held in Brussels, Belgium, from 10-19 September 2001 (Hardcover, New)
Andre Preumont
R2,483 Discovery Miles 24 830 Ships in 12 - 17 working days

Structural vibrations have become the critical factor limiting the performance of many engineering systems, typical amplitudes ranging from meters to a few nanometers. Many acoustic nuisances in transportation systems and residential and office buildings are also related to structural vibrations. The active control of such vibrations involves nine orders of magnitude of vibration amplitude, which exerts a profound influence on the technology. Active vibration control is highly multidisciplinary, involving structural vibration, acoustics, signal processing, materials science, and actuator and sensor technology. Chapters 1-3 of this book provide a state-of-the-art introduction to active vibration control, active sound control, and active vibroacoustic control, respectively. Chapter 4 discusses actuator/sensor placement, Chapter 5 deals with robust control of vibrating structures, Chapter 6 discusses finite element modelling of piezoelectric continua and Chapter 7 addresses the latest trends in piezoelectric multiple-degree-of-freedom actuators/sensors. Chapters 8-12 deal with example applications, including semi-active joints, active isolation and health monitoring. Chapter 13 addresses MEMS technology, while Chapter 14 discusses the design of power amplifiers for piezoelectric actuators.

Vibration Control of Active Structures - An Introduction (Hardcover): Andre Preumont Vibration Control of Active Structures - An Introduction (Hardcover)
Andre Preumont
R2,472 Discovery Miles 24 720 Ships in 12 - 17 working days

Preface. 1. Introduction. 2. Some Concepts of Structural Dynamics. 3. Actuators, Piezoelectric Materials, and Active Structures. 4. Collocated Versus Non-Collocated Control. 5. Active Damping with Collocated Pairs. 6. State Space Approach. 7. Analysis and Synthesis in the Frequency Domain. 8. Optimal Control. 9. Controllability and Observability. 10. Stability. 11. Applications. Bibliography. Index.

Twelve Lectures on Structural Dynamics (Hardcover, 2013 ed.): Andre Preumont Twelve Lectures on Structural Dynamics (Hardcover, 2013 ed.)
Andre Preumont
R2,829 R1,997 Discovery Miles 19 970 Save R832 (29%) Ships in 12 - 17 working days

This text addresses the modeling of vibrating systems with the perspective of finding the model of minimum complexity which accounts for the physics of the phenomena at play. The first half of the book (Ch.1-6) deals with the dynamics of discrete and continuous mechanical systems; the classical approach emphasizes the use of Lagrange's equations. The second half of the book (Ch.7-12) deals with more advanced topics, rarely encountered in the existing literature: seismic excitation, random vibration (including fatigue), rotor dynamics, vibration isolation and dynamic vibration absorbers; the final chapter is an introduction to active control of vibrations. The first part of this text may be used as a one semester course for 3rd year students in Mechanical, Aerospace or Civil Engineering. The second part of the text is intended for graduate classes. A set of problems is provided at the end of every chapter. The author has a 35 years experience in various aspects of Structural dynamics, both in industry (nuclear and aerospace) and in academia; he was one of the pioneers in the field of active structures. He is the author of several books on random vibration, active structures and structural control.

The Mechanical Systems Design Handbook - Modeling, Measurement, and Control (Hardcover): Karsten Berns, Martin Hagele The Mechanical Systems Design Handbook - Modeling, Measurement, and Control (Hardcover)
Karsten Berns, Martin Hagele; Edited by Osita D. I. Nwokah; Contributions by Robert E. Skelton, Miomir Vukobratovic, …
R7,375 Discovery Miles 73 750 Ships in 12 - 17 working days

With a specific focus on the needs of the designers and engineers in industrial settings, The Mechanical Systems Design Handbook: Modeling, Measurement, and Control presents a practical overview of basic issues associated with design and control of mechanical systems. In four sections, each edited by a renowned expert, this book answers diverse questions fundamental to the successful design and implementation of mechanical systems in a variety of applications.

Manufacturing addresses design and control issues related to manufacturing systems. From fundamental design principles to control of discrete events, machine tools, and machining operations to polymer processing and precision manufacturing systems.

Vibration Control explores a range of topics related to active vibration control, including piezoelectric networks, the boundary control method, and semi-active suspension systems.

Aerospace Systems presents a detailed analysis of the mechanics and dynamics of tensegrity structures

Robotics offers encyclopedic coverage of the control and design of robotic systems, including kinematics, dynamics, soft-computing techniques, and teleoperation.

Mechanical systems designers and engineers have few resources dedicated to their particular and often unique problems. The Mechanical Systems Design Handbook clearly shows how theory applies to real world challenges and will be a welcomed and valuable addition to your library.

Twelve Lectures on Structural Dynamics (Paperback, 2013 ed.): Andre Preumont Twelve Lectures on Structural Dynamics (Paperback, 2013 ed.)
Andre Preumont
R2,336 Discovery Miles 23 360 Ships in 10 - 15 working days

This text addresses the modeling of vibrating systems with the perspective of finding the model of minimum complexity which accounts for the physics of the phenomena at play. The first half of the book (Ch.1-6) deals with the dynamics of discrete and continuous mechanical systems; the classical approach emphasizes the use of Lagrange's equations. The second half of the book (Ch.7-12) deals with more advanced topics, rarely encountered in the existing literature: seismic excitation, random vibration (including fatigue), rotor dynamics, vibration isolation and dynamic vibration absorbers; the final chapter is an introduction to active control of vibrations. The first part of this text may be used as a one semester course for 3rd year students in Mechanical, Aerospace or Civil Engineering. The second part of the text is intended for graduate classes. A set of problems is provided at the end of every chapter. The author has a 35 years experience in various aspects of Structural dynamics, both in industry (nuclear and aerospace) and in academia; he was one of the pioneers in the field of active structures. He is the author of several books on random vibration, active structures and structural control.

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