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Pathfollowing of high-dimensional hysteretic systems under periodic forcing
by
Rosati, Luciano
, Vaiana, Nicoló
, Formica, Giovanni
, Lacarbonara, Walter
in
Automotive Engineering
/ Bifurcations
/ Classical Mechanics
/ Control
/ Dynamic response
/ Dynamical Systems
/ Engineering
/ Hysteresis models
/ Hysteretic systems
/ Mechanical Engineering
/ Nonlinear response
/ Original Paper
/ Poincare maps
/ Rheological properties
/ Vibration
2021
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Pathfollowing of high-dimensional hysteretic systems under periodic forcing
by
Rosati, Luciano
, Vaiana, Nicoló
, Formica, Giovanni
, Lacarbonara, Walter
in
Automotive Engineering
/ Bifurcations
/ Classical Mechanics
/ Control
/ Dynamic response
/ Dynamical Systems
/ Engineering
/ Hysteresis models
/ Hysteretic systems
/ Mechanical Engineering
/ Nonlinear response
/ Original Paper
/ Poincare maps
/ Rheological properties
/ Vibration
2021
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Pathfollowing of high-dimensional hysteretic systems under periodic forcing
by
Rosati, Luciano
, Vaiana, Nicoló
, Formica, Giovanni
, Lacarbonara, Walter
in
Automotive Engineering
/ Bifurcations
/ Classical Mechanics
/ Control
/ Dynamic response
/ Dynamical Systems
/ Engineering
/ Hysteresis models
/ Hysteretic systems
/ Mechanical Engineering
/ Nonlinear response
/ Original Paper
/ Poincare maps
/ Rheological properties
/ Vibration
2021
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Pathfollowing of high-dimensional hysteretic systems under periodic forcing
Journal Article
Pathfollowing of high-dimensional hysteretic systems under periodic forcing
2021
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Overview
The dynamic response and bifurcations of high-dimensional systems endowed with hysteretic restoring forces in all degrees of freedom are investigated. Two types of hysteresis models are considered, namely the Bouc–Wen model and a differential version of the so-called exponential model of hysteresis. The numerical technique tailored for tackling high-dimensional hysteretic systems is based on an enhanced pathfollowing approach based on the Poincaré map. In particular, a five-dof mass-spring-damper-like system, with each rheological element described by the Bouc–Wen or the exponential model of hysteresis enriched by cubic and quintic nonlinear elastic terms, is investigated and a rich variety of nonlinear responses and bifurcations is found and discussed.
Publisher
Springer Netherlands,Springer Nature B.V
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