Vibration Analysis And Control System Dynamics


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Vibration Analysis and Control System Dynamics


Vibration Analysis and Control System Dynamics

Author: C. F. Beards

language: en

Publisher: Prentice Hall

Release Date: 1992


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This study provides a thorough understanding of the principles and methods of dynamic analysis, showing how it can be applied to the analysis of vibrating systems and the study of control system dynamics.

Engineering Vibration Analysis with Application to Control Systems


Engineering Vibration Analysis with Application to Control Systems

Author: C. Beards

language: en

Publisher: Elsevier

Release Date: 1995-06-17


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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.

System Dynamics and Mechanical Vibrations


System Dynamics and Mechanical Vibrations

Author: Dietmar Findeisen

language: en

Publisher: Springer Science & Business Media

Release Date: 2013-03-09


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The Aim ofthe Book. This book is concerned with the subjects of vibrations and system dynamics on an integrated basis. Design engineers find themselves confronted with demands made on machin ery, structures and dynamic systems which are increasing at such a rate that dy namic performance requirements are always rising. Hence, advances in analysis and design techniques have to keep pace with recent developments in strong lightweight materials, more extensive knowledge of materials properties and structural loading. Whereas the excitation applied to structures is always increas ing, the machine mass and damping is reduced. Consequently, unwanted vibra tions can have very serious effects on dynamic systems. It is, therefore, essential to carry out vibration analysis as an inherent part of machine design. The problems arising either from the observed or predicted dynamic behaviour of systems are of particular interest in control theory. Vibration theory places emphasis on analysis, which implies determining the response to given excita tions, and any design amounts to changing the system parameters so as to bring about a satisfactory response. The improvement in performance achieved by changing solely the parameters of the mechanical system is very limited. How ever, a new approach to system design has proved to be more successful. It con sists of designing forces that, when exerted on the system, produce a satisfactory response. This approach, known as control, has become a ubiquitous part of the engineering curriculum, completing the conventional mechanical disciplines.