This paper gives new motion generation methods for mechanical port-Hamiltonian systems. First, we propose a generation method based on an asymptotic stabilization method without damping assignment. This asymptotic stabilization method preserves the Hamiltonian structure in the closed-loop system although the controller itself is not a port- Hamiltonian system. Second, we propose another method based on an adaptive asymptotic stabilization method for unknown damping. This adaptive asymptotic stabilizer does not use the value and the sign of the damping at all. Finally, we confirm the effectiveness of our techniques in some numerical simulation
In this paper an adaptive control scheme is presented for general port-Hamiltonian systems. Adaptive...
In this paper an internal model based approach to periodic input disturbance suppression for port-Ha...
We study the asymptotic properties of control by interconnection, a passivity-based controller desig...
In this paper we show force feedback and position control of a class of standard mechanical system i...
A dynamic extension for position feedback of port-Hamiltonian mechanical systems is studied. First w...
A dynamic extension for position feedback of port-Hamiltonian mechanical systems is studied. First w...
A dynamic extension for position feedback of port-Hamiltonian mechanical systems is studied. First w...
A novel method for asymptotic stabilization of a class of non-holonomic systems is presented. The me...
Port-Hamiltonian Systems (PHS) have a particular form that incorporates explicitly a function of the...
In this chapter an internal model based approach to periodic input disturbance suppression for port-...
Mechanical systems can be asymptotically stabilized without velocity measurements by applying a dyna...
In this paper an adaptive control scheme is presented for general port-Hamiltonian systems. Adaptive...
In this paper an internal model based approach to periodic input disturbance suppression for port-Ha...
We study the asymptotic properties of control by interconnection, a passivity-based controller desig...
In this paper we show force feedback and position control of a class of standard mechanical system i...
A dynamic extension for position feedback of port-Hamiltonian mechanical systems is studied. First w...
A dynamic extension for position feedback of port-Hamiltonian mechanical systems is studied. First w...
A dynamic extension for position feedback of port-Hamiltonian mechanical systems is studied. First w...
A novel method for asymptotic stabilization of a class of non-holonomic systems is presented. The me...
Port-Hamiltonian Systems (PHS) have a particular form that incorporates explicitly a function of the...
In this chapter an internal model based approach to periodic input disturbance suppression for port-...
Mechanical systems can be asymptotically stabilized without velocity measurements by applying a dyna...
In this paper an adaptive control scheme is presented for general port-Hamiltonian systems. Adaptive...
In this paper an internal model based approach to periodic input disturbance suppression for port-Ha...
We study the asymptotic properties of control by interconnection, a passivity-based controller desig...