Passive and Active Structural Vibration Control in Civil Engineering

Passive and Active Structural Vibration Control in Civil Engineering
Title Passive and Active Structural Vibration Control in Civil Engineering PDF eBook
Author T.T. Soong
Publisher Springer
Total Pages 380
Release 2014-05-04
Genre Computers
ISBN 3709130123

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Base isolation, passive energy dissipation and active control represent three innovative technologies for protection of structures under environmental loads. Increasingly, they are being applied to the design of new structures or to the retrofit of existing structures against wind, earthquakes and other external loads. This book, with contributions from leading researchers from Japan, Europe, and the United States, presents a balanced view of current research and world-wide development in this exciting and fast expanding field. Basic principles as well as practical design and implementational issues associated with the application of base isolation systems and passive and active control devices to civil engineering structures are carefully addressed. Examples of structural applications are presented and extensively discussed.

Passive and Active Structural Vibration Control in Civil Engineering

Passive and Active Structural Vibration Control in Civil Engineering
Title Passive and Active Structural Vibration Control in Civil Engineering PDF eBook
Author T.T. Soong
Publisher Springer
Total Pages 380
Release 2014-10-08
Genre Computers
ISBN 9783709143087

Download Passive and Active Structural Vibration Control in Civil Engineering Book in PDF, Epub and Kindle

Base isolation, passive energy dissipation and active control represent three innovative technologies for protection of structures under environmental loads. Increasingly, they are being applied to the design of new structures or to the retrofit of existing structures against wind, earthquakes and other external loads. This book, with contributions from leading researchers from Japan, Europe, and the United States, presents a balanced view of current research and world-wide development in this exciting and fast expanding field. Basic principles as well as practical design and implementational issues associated with the application of base isolation systems and passive and active control devices to civil engineering structures are carefully addressed. Examples of structural applications are presented and extensively discussed.

Passive and Active Structural Vibration Control in Civil Engineering

Passive and Active Structural Vibration Control in Civil Engineering
Title Passive and Active Structural Vibration Control in Civil Engineering PDF eBook
Author T.T. Soong
Publisher Springer
Total Pages 396
Release 1994
Genre Computers
ISBN

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Base isolation, passive energy dissipation and active control represent three innovative technologies for protection of structures under environmental loads. Increasingly, they are being applied to the design of new structures or to the retrofit of existing structures against wind, earthquakes and other external loads. This book, with contributions from leading researchers from Japan, Europe, and the United States, presents a balanced view of current research and world-wide development in this exciting and fast expanding field. Basic principles as well as practical design and implementational issues associated with the application of base isolation systems and passive and active control devices to civil engineering structures are carefully addressed. Examples of structural applications are presented and extensively discussed.

Active Structural Control

Active Structural Control
Title Active Structural Control PDF eBook
Author T. T. Soong
Publisher Longman Scientific and Technical
Total Pages 214
Release 1990
Genre Science
ISBN

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Design Optimization of Active and Passive Structural Control Systems

Design Optimization of Active and Passive Structural Control Systems
Title Design Optimization of Active and Passive Structural Control Systems PDF eBook
Author Lagaros, Nikos D.
Publisher IGI Global
Total Pages 414
Release 2012-08-31
Genre Technology & Engineering
ISBN 1466620307

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A typical engineering task during the development of any system is, among others, to improve its performance in terms of cost and response. Improvements can be achieved either by simply using design rules based on the experience or in an automated way by using optimization methods that lead to optimum designs. Design Optimization of Active and Passive Structural Control Systems includes Earthquake Engineering and Tuned Mass Damper research topics into a volume taking advantage of the connecting link between them, which is optimization. This is a publication addressing the design optimization of active and passive control systems. This title is perfect for engineers, professionals, professors, and students alike, providing cutting edge research and applications.

Advanced Structural Dynamics and Active Control of Structures

Advanced Structural Dynamics and Active Control of Structures
Title Advanced Structural Dynamics and Active Control of Structures PDF eBook
Author Wodek Gawronski
Publisher Springer
Total Pages 397
Release 2007-06-14
Genre Technology & Engineering
ISBN 0387721339

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Science is for those who learn; poetry for those who know. —Joseph Roux This book is a continuation of my previous book, Dynamics and Control of Structures [44]. The expanded book includes three additional chapters and an additional appendix: Chapter 3, “Special Models”; Chapter 8, “Modal Actuators and Sensors”; and Chapter 9, “System Identification. ” Other chapters have been significantly revised and supplemented with new topics, including discrete-time models of structures, limited-time and -frequency grammians and reduction, almo- balanced modal models, simultaneous placement of sensors and actuators, and structural damage detection. The appendices have also been updated and expanded. Appendix A consists of thirteen new Matlab programs. Appendix B is a new addition and includes eleven Matlab programs that solve examples from each chapter. In Appendix C model data are given. Several books on structural dynamics and control have been published. Meirovitch’s textbook [108] covers methods of structural dynamics (virtual work, d’Alambert’s principle, Hamilton’s principle, Lagrange’s and Hamilton’s equations, and modal analysis of structures) and control (pole placement methods, LQG design, and modal control). Ewins’s book [33] presents methods of modal testing of structures. Natke’s book [111] on structural identification also contains excellent material on structural dynamics. Fuller, Elliot, and Nelson [40] cover problems of structural active control and structural acoustic control.

Vibration Control of Active Structures

Vibration Control of Active Structures
Title Vibration Control of Active Structures PDF eBook
Author A. Preumont
Publisher Springer Science & Business Media
Total Pages 376
Release 2006-04-11
Genre Technology & Engineering
ISBN 0306484226

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My objective in writing this book was to cross the bridge between the structural dynamics and control communities, while providing an overview of the potential of SMART materials for sensing and actuating purposes in active vibration c- trol. I wanted to keep it relatively simple and focused on systems which worked. This resulted in the following: (i) I restricted the text to fundamental concepts and left aside most advanced ones (i.e. robust control) whose usefulness had not yet clearly been established for the application at hand. (ii) I promoted the use of collocated actuator/sensor pairs whose potential, I thought, was strongly underestimated by the control community. (iii) I emphasized control laws with guaranteed stability for active damping (the wide-ranging applications of the IFF are particularly impressive). (iv) I tried to explain why an accurate pred- tion of the transmission zeros (usually called anti-resonances by the structural dynamicists) is so important in evaluating the performance of a control system. (v) I emphasized the fact that the open-loop zeros are more difficult to predict than the poles, and that they could be strongly influenced by the model trun- tion (high frequency dynamics) or by local effects (such as membrane strains in piezoelectric shells), especially for nearly collocated distributed actuator/sensor pairs; this effect alone explains many disappointments in active control systems.