Engineering Vibration Analysis With Application To Control Systems

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Engineering Vibration Analysis with Application to Control Systems

Most machines and structures are required to operate with low levels of vibration as smooth running leads to reduced stresses and fatigue and little noise. This book provides a thorough explanation of the principles and methods used to analyse the vibrations of engineering systems, combined with a description of how these techniques and results can be applied to the study of control system dynamics. Numerous worked examples are included, as well as problems with worked solutions, and particular attention is paid to the mathematical modelling of dynamic systems and the derivation of the equations of motion. All engineers, practising and student, should have a good understanding of the methods of analysis available for predicting the vibration response of a system and how it can be modified to produce acceptable results. This text provides an invaluable insight into both.
Engineering Vibration Analysis with Application to Control Systems

Author: C. F. Beards
language: en
Publisher: Hodder & Stoughton Limited
Release Date: 1995-01-01
Provides a thorough explanation of the principles and methods used to analyze the vibrations of engineering systems, combined with a description of how these techniques and results can be applied to the study of control system dynamics. This is a text for
Vibration Analysis and Control in Mechanical Structures and Wind Energy Conversion Systems

Author: Francisco Beltran-Carbajal
language: en
Publisher: BoD – Books on Demand
Release Date: 2018-04-18
This book focuses on recent and innovative methods on vibration analysis, system identification, and diverse control design methods for both wind energy conversion systems and vibrating systems. Advances on both theoretical and experimental studies about analysis and control of oscillating systems in several engineering disciplines are discussed. Various control devices are synthesized and implemented for vibration attenuation tasks. The book is addressed to researchers and practitioners on the subject, as well as undergraduate and postgraduate students and other experts and newcomers seeking more information about the state of the art, new challenges, innovative solutions, and new trends and developments in these areas. The six chapters of the book cover a wide range of interesting issues related to modeling, vibration control, parameter identification, active vehicle suspensions, tuned vibration absorbers, electronically controlled wind energy conversion systems, and other relevant case studies.