Comprehensive Investigation on Active-Passive Hybrid Isolation and Tunable Dynamic Vibration Absorption - Fei Wang, Zhenping WENG, Lin He

Comprehensive Investigation on Active-Passive Hybrid Isolation and Tunable Dynamic Vibration Absorption (eBook)

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2018 | 1st ed. 2019
XXII, 175 Seiten
Springer Singapore (Verlag)
978-981-13-3056-8 (ISBN)
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This book discusses efforts to control the low-frequency vibration transmission of typical power equipment and pipeline systems of ships, exploring the use of active and passive hybrid vibration isolation and adjustable dynamic vibration absorption technologies. It also proposes an adaptive feed-forward control strategy and studies a distributed feed-forward control hardware system. In addition, the book presents a three-way dynamic vibration absorption theory used to design a pipeline-system adjustable dynamic vibration absorber, which offers a number of advantages, such as compact structure, easy assembly and disassembly, low power consumption, excellent vibration control effect and wide frequency band adjustable ability, etc. This book is a valuable resource for researchers and engineers in the fields of noise and vibration control, active control systems, active vibration isolation and adaptive dynamic vibration absorption.



Dr. Fei WANG majored in active noise and vibration control of merchant ships, vessels and warships. He has co-published 4 books, 13 papers and has registered 5 patents.

Prof. Lin He is a Professor and Academic at the Chinese Academy of Engineering. He is a Ph.D. Supervisor, and a director of the Institute of Vibration and Noise Research, which since 2005 has developed the first generation of ship noise monitoring system in China, laying the foundation for the acoustic-characteristics management of ships. These developments have been widely used and have been granted a number of national invention patents. In recent years, his team has focused on 'active and passive hybrid vibration isolation technology,' achieving significant advances in a number of key areas. The series of anti-high pressure balanced flexible hoses he developed have outstanding pipeline vibration isolation properties, and have solved a number of noise reduction problems, and won the 2009 National Science and Technology Progress Award. He has written more than 50 papers and has co-published 4 academic monographs.

Prof. Zhenping WENG is the Director of the Wuhan Second Ship Design and Research Institute, and the Director of the National Key Laboratory for Vibration and Noise of Defence Ships. His research interests include automatic control, intelligent control and noise and vibration control for ships. He has written more than 18 papers and has co-published 4 books.


This book discusses efforts to control the low-frequency vibration transmission of typical power equipment and pipeline systems of ships, exploring the use of active and passive hybrid vibration isolation and adjustable dynamic vibration absorption technologies. It also proposes an adaptive feed-forward control strategy and studies a distributed feed-forward control hardware system. In addition, the book presents a three-way dynamic vibration absorption theory used to design a pipeline-system adjustable dynamic vibration absorber, which offers a number of advantages, such as compact structure, easy assembly and disassembly, low power consumption, excellent vibration control effect and wide frequency band adjustable ability, etc. This book is a valuable resource for researchers and engineers in the fields of noise and vibration control, active control systems, active vibration isolation and adaptive dynamic vibration absorption.

Dr. Fei WANG majored in active noise and vibration control of merchant ships, vessels and warships. He has co-published 4 books, 13 papers and has registered 5 patents. Prof. Lin He is a Professor and Academic at the Chinese Academy of Engineering. He is a Ph.D. Supervisor, and a director of the Institute of Vibration and Noise Research, which since 2005 has developed the first generation of ship noise monitoring system in China, laying the foundation for the acoustic-characteristics management of ships. These developments have been widely used and have been granted a number of national invention patents. In recent years, his team has focused on “active and passive hybrid vibration isolation technology,” achieving significant advances in a number of key areas. The series of anti-high pressure balanced flexible hoses he developed have outstanding pipeline vibration isolation properties, and have solved a number of noise reduction problems, and won the 2009 National Science and Technology Progress Award. He has written more than 50 papers and has co-published 4 academic monographs. Prof. Zhenping WENG is the Director of the Wuhan Second Ship Design and Research Institute, and the Director of the National Key Laboratory for Vibration and Noise of Defence Ships. His research interests include automatic control, intelligent control and noise and vibration control for ships. He has written more than 18 papers and has co-published 4 books.

Introduction.- Active and Passive Hybrid Isolation.- Active and Passive Hybrid Vibration Isolator Performance Test.- Adaptive Feedforward Control System.- Comprehensive Experimental Verification for Avi.- Research on Pipeline Three-Way Adjustable Frequency Dynamic Vibration Absorption Technology.- Adaptive Frequency Adjustment Control System.- Experimental Verification for Adva.

Erscheint lt. Verlag 17.12.2018
Reihe/Serie Springer Tracts in Mechanical Engineering
Springer Tracts in Mechanical Engineering
Zusatzinfo XXII, 175 p. 161 illus., 136 illus. in color.
Verlagsort Singapore
Sprache englisch
Themenwelt Naturwissenschaften Physik / Astronomie Mechanik
Technik Bauwesen
Technik Elektrotechnik / Energietechnik
Technik Maschinenbau
Schlagworte Active vibration control • Adaptive Control Strategy • Adaptive Dynamic Vbration Absorber • Control System Implementation • Diesel engine • Digital Power Amplifier • DSP • Low Frequency Vibration • machine learning • Pipe System
ISBN-10 981-13-3056-5 / 9811330565
ISBN-13 978-981-13-3056-8 / 9789811330568
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