We consider a class of linear flexible mechanical systems arising from the dynamics of animal locomotion. A distinctive property of such systems is that the stiffness matrix is asymmetric. Extending the standard notion to this class, we define the natural oscillation as a free response under the damping compensation to achieve marginal stability. As a benchmark, a link chain system in a fluid environment is considered, and its natural oscillation is shown to exhibit travelling waves appropriate for undulatory swimming. Moreover, we propose nonlinear feedback controllers, inspired by neuronal dynamics, to achieve entrainment to the natural oscillation
A mechanical rectifier system is referred to as a class of multi-segmental mechanical structures who...
For a biologically inspired mechanical system consisting of multiple segments, its natural oscillati...
Oscillatory movements play important roles in human life, various movements in human life, such as w...
© 2014 IEEE. We consider a class of multibody robotic systems inspired by dynamics of animal locomot...
We consider a class of multibody robotic systems inspired by dynamics of animal locomotion, such as ...
We consider linear mechanical systems with asymmetric stiffness matrices. The class of systems captu...
Abstract—We consider a class of mechanical systems aris-ing from the dynamics of multi-segmental ani...
We consider a class of mechanical systems arising from the dynamics of multi-segmental animal locomo...
Pattern formation is everywhere in both biology and engineering. A few processes in which itoccurs a...
Pattern formation is everywhere in both biology and engineering. A few processes in which itoccurs a...
In engineering designs of mechanical systems, efficiency can often be increased by exploiting resona...
Biological systems display a variety of complex dynamic behaviors, ranging from periodic orbits to c...
Biological control mechanism has motivated central pattern generator (CPG) circnits as the basic arc...
International audienceThe mechanism of entrainment to natural oscillations in a class of (bio)mechan...
A class of feedback controllers has been proposed to achieve a desired locomotion behaviour for mech...
A mechanical rectifier system is referred to as a class of multi-segmental mechanical structures who...
For a biologically inspired mechanical system consisting of multiple segments, its natural oscillati...
Oscillatory movements play important roles in human life, various movements in human life, such as w...
© 2014 IEEE. We consider a class of multibody robotic systems inspired by dynamics of animal locomot...
We consider a class of multibody robotic systems inspired by dynamics of animal locomotion, such as ...
We consider linear mechanical systems with asymmetric stiffness matrices. The class of systems captu...
Abstract—We consider a class of mechanical systems aris-ing from the dynamics of multi-segmental ani...
We consider a class of mechanical systems arising from the dynamics of multi-segmental animal locomo...
Pattern formation is everywhere in both biology and engineering. A few processes in which itoccurs a...
Pattern formation is everywhere in both biology and engineering. A few processes in which itoccurs a...
In engineering designs of mechanical systems, efficiency can often be increased by exploiting resona...
Biological systems display a variety of complex dynamic behaviors, ranging from periodic orbits to c...
Biological control mechanism has motivated central pattern generator (CPG) circnits as the basic arc...
International audienceThe mechanism of entrainment to natural oscillations in a class of (bio)mechan...
A class of feedback controllers has been proposed to achieve a desired locomotion behaviour for mech...
A mechanical rectifier system is referred to as a class of multi-segmental mechanical structures who...
For a biologically inspired mechanical system consisting of multiple segments, its natural oscillati...
Oscillatory movements play important roles in human life, various movements in human life, such as w...