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This book describes the modelling and optimisation of vibration
reduction systems in an integrated fashion using nonlinear
equations of motion. It proposes an effective optimisation method
for determining the basic characteristics of the non-linear
visco-elastic elements used in passive vibration reduction systems.
In the case of semi-active and active vibration isolators, a design
process of the advanced control systems is proposed that makes
possible to optimise the controller settings relatively to the
selected vibro-isolation criteria. The approach developed here is
subsequently tested by means of experimental investigations
conducted on various sample vibration reduction systems: passive,
semi-active and active. The book presents a biomechanical modelling
approach that allows users to select the properties of
vibro-isolation systems for different types of oscillation and
different optimisation criteria - and can significantly reduce the
harmful vibrations that can affect the human body in the process.
Further, the book equips readers to evaluate the viscoelastic
characteristics of passive systems and design control systems for
semi-active and active systems. Modelling and Control Design of
Vibration Reduction Systems offers a valuable guide for researchers
and practitioners alike. It also provides students and academics
with systematic information on the procedures to be followed in the
design process for semi-active or active vibration reduction
systems.
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