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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 equatio
Automatic control. --- Vibration. --- Vibration. Automatic control. --- Vibration --- Automatic control --- Civil & Environmental Engineering --- Engineering & Applied Sciences --- Civil Engineering --- Control engineering --- Control equipment --- Control theory --- Engineering instruments --- Automation --- Programmable controllers --- Cycles --- Mechanics --- Sound --- Engineering --- Mechanical Engineering
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Many structures suffer from unwanted vibrations and, although careful analysis at the design stage can minimise these, the vibration levels of many structures are excessive. In this book the entire range of methods of control, both by damping and by excitation, is described in a single volume.Clear and concise descriptions are given of the techniques for mathematically modelling real structures so that the equations which describe the motion of such structures can be derived. This approach leads to a comprehensive discussion of the analysis of typical models of vibrating structures exc
Structural dynamics. --- Damping (Mechanics) --- Oscillations --- Vibration --- Waves --- Building dynamics --- Dynamics, Structural --- Structural vibration --- Strains and stresses --- Structural analysis (Engineering) --- Damping (Mechanics). --- Engineering --- Civil Engineering --- Structural dynamics --- Constructions --- Dynamique
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