Impedance control is a widely adopted strategy to execute tasks involving interaction of a robot manipulator with the environment. The goal: is to impose an end-effector dynamic behavior described by a mechanical impedance. A crucial point is the definition of the elastic contribution in the impedance equation according to the task requirements; this is achieved by a proper choice of the equivalent stiffness matrix. In this paper an energy-based argument is used to derive the dynamic equation of a mechanical impedance characterized by a translational part and a rotational part. The adoption of unit quaternions to describe orientation displacements leads to a geometrically consistent definition of the stiffness in the impedance equation. Remarkably, off-diagonal elements in the equivalent stiffness matrix are considered; namely, coupling forces with orientation displacements and coupling moments with position displacements. The equilibrium and the stability of the impedance equation are discussed as well as the geometric properties of the stiffness matrix.

Robot impedance control with nondiagonal stiffness / F., Caccavale; Siciliano, Bruno; Villani, Luigi. - In: IEEE TRANSACTIONS ON AUTOMATIC CONTROL. - ISSN 0018-9286. - STAMPA. - 44:(1999), pp. 1943-1946. [10.1109/9.793782]

Robot impedance control with nondiagonal stiffness

SICILIANO, BRUNO;VILLANI, LUIGI
1999

Abstract

Impedance control is a widely adopted strategy to execute tasks involving interaction of a robot manipulator with the environment. The goal: is to impose an end-effector dynamic behavior described by a mechanical impedance. A crucial point is the definition of the elastic contribution in the impedance equation according to the task requirements; this is achieved by a proper choice of the equivalent stiffness matrix. In this paper an energy-based argument is used to derive the dynamic equation of a mechanical impedance characterized by a translational part and a rotational part. The adoption of unit quaternions to describe orientation displacements leads to a geometrically consistent definition of the stiffness in the impedance equation. Remarkably, off-diagonal elements in the equivalent stiffness matrix are considered; namely, coupling forces with orientation displacements and coupling moments with position displacements. The equilibrium and the stability of the impedance equation are discussed as well as the geometric properties of the stiffness matrix.
1999
Robot impedance control with nondiagonal stiffness / F., Caccavale; Siciliano, Bruno; Villani, Luigi. - In: IEEE TRANSACTIONS ON AUTOMATIC CONTROL. - ISSN 0018-9286. - STAMPA. - 44:(1999), pp. 1943-1946. [10.1109/9.793782]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/464925
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