Theory of Vibration Protection
Springer International Publishing (Verlag)
978-3-319-28018-9 (ISBN)
Fundamental approaches of vibration protection, which are considered in this book, are the passive, parametric and optimal active vibration protection. The passive vibration protection is based on vibration isolation, vibration damping and dynamic absorbers. Parametric vibration protection theory is based on the Shchipanov-Luzin invariance principle. Optimal active vibration protection theory is based on the Pontryagin principle and the Krein moment method.
The book also contains special topics such as suppression of vibrations at the source of their occurrence and the harmful influence of vibrations on humans. About the Authors.
Igor A Karnovsky, Ph.D., Dr. Sci., is a specialist in structural analysis, theory of vibration and optimal control of vibration. He has 40 years of experience in research, teaching and consulting in this field, and is the author of more than 70 published scientific papers, including two books in Structural Analysis (published with Springer in 2010-2012) and three handbooks in Structural Dynamics (published with McGraw Hill in 2001-2004). He also holds a number of vibration-control-related patents.
Evgeniy Lebed, Ph.D., is a specialist in applied mathematics and engineering. He has 10 years of experience in research, teaching and consulting in this field. The main sphere of his research interests are qualitative theory of differential equations, integral transforms and frequency-domain analysis with application to image and signal processing. He is the author of 15 published scientific papers and a US patent (2015).
Igor A Karnovsky, Ph.D., Dr. Sci., is a specialist in structural analysis, theory of vibration and optimal control of vibration. He has 40 years of experience in research, teaching and consulting in this field, and is the author of more than 70 published scientific papers, including two books in Structural Analysis (published with Springer in 2010-2012) and three handbooks in Structural Dynamics (published with McGraw Hill in 2001-2004). He also holds a number of vibration-control-related patents. Evgeniy Lebed, Ph.D., is a specialist in applied mathematics and engineering. He has 10 years of experience in research, teaching and consulting in this field. The main sphere of his research interests are qualitative theory of differential equations, integral transforms and frequency-domain analysis with application to image and signal processing. He is the author of 15 published scientific papers and a US patent (2015).
Mechanical Exposure and Vibration Protection Methods.- Part I Passive Vibration Protection.- Vibration Isolation of Systems with One Degree of Freedom.- Mechanical Two-Port Network for System with Lumped Parameters.- Mechanical Two and Multi-Portal Networks of Mixed Systems.- Arbitrary Excitation.- Vibration Damping.- Vibration Suppression of the Structures with Lumped Parameters.- Vibration Suppression of the Structures with Distributed Parameters.- Invariant (Parametric) Vibration Protection of Linear Systems.- Nonlinear Theory of Vibration Protection Systems.- Part II Active Vibration Protection.- Pontryagin's Maximal Principle.- Krein's Moment Method.- Structural Theory of Vibration Protection Systems.- Part III Shock and Transient Vibration.- Transient Vibration.- Shock and Spectral Theory.- Stability of Vibration Protection Systems.- Vibration Protection of Human-Operator.
Erscheinungsdatum | 08.03.2016 |
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Zusatzinfo | XLV, 674 p. 316 illus., 312 illus. in color. |
Verlagsort | Cham |
Sprache | englisch |
Maße | 155 x 235 mm |
Themenwelt | Technik ► Maschinenbau |
Schlagworte | Active Vibration Protection • Aerospace Technology and Astronautics • Engineering • Machinery and Machine Elements • Mechanical Exposure • Passive Vibration Protection • Shock Vibration • Stability of Vibration Protection • Transient Cibration • Vibration damping • Vibration, Dynamical Systems, Control • Vibration Protection Methods • Vibration Suppression |
ISBN-10 | 3-319-28018-X / 331928018X |
ISBN-13 | 978-3-319-28018-9 / 9783319280189 |
Zustand | Neuware |
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