In this paper, the relation between B-splines and FIR (Finite Impulse Response) filters is demonstrated and exploited to design a digital filter for trajectory planning, combining the very simple structure and computational efficiency of FIR filters withthe flexibility of splines. In particular, the trajectorygenerator consists of two main elements. The former is devoted to the solution of an optimization problem that, given a set of points to be interpolated (or approximated), provides the control points defining the spline. The latter, a cascade of moving average filters, gives the trajectory profile at each sampling time on the basis of such points. The proposed method has been applied to several robotic and industrial applications, and ...
none2noIn this paper, the equivalence between uniform B-splines of degree p and the output of a chai...
none2noIn this paper, the use of FIR (Finite Impulse Response) filters for planning minimum-time tra...
In this paper, the use of FIR (Finite Impulse Response) filters for planning minimum-time trajectori...
none2In this paper, the relation between B-splines and FIR (Finite Impulse Response) filters is demo...
In this paper, a novel technique for online generating trajectories in the 3-D space is presented. T...
In this paper, a novel technique for online generating trajectories in the 3-D space is presented. T...
In this paper, a novel technique for online generating trajectories in the 3-D space is presented. T...
In this paper, a novel technique for online generating trajectories in the 3-D space is presented. T...
In this paper, a novel technique for online generating trajectories in the 3-D space is presented. T...
In this paper, a novel technique for online generating trajectories in the 3-D space is presented. T...
In this paper, a novel technique for online generating trajectories in the 3-D space is presented. T...
In this paper, the equivalence between uniform B-splines of degree p and the output of a chain compo...
In this paper, the equivalence between uniform B-splines of degree p and the output of a chain compo...
In this paper, the equivalence between uniform B-splines of degree p and the output of a chain compo...
In this paper, the equivalence between uniform B-splines of degree p and the output of a chain compo...
none2noIn this paper, the equivalence between uniform B-splines of degree p and the output of a chai...
none2noIn this paper, the use of FIR (Finite Impulse Response) filters for planning minimum-time tra...
In this paper, the use of FIR (Finite Impulse Response) filters for planning minimum-time trajectori...
none2In this paper, the relation between B-splines and FIR (Finite Impulse Response) filters is demo...
In this paper, a novel technique for online generating trajectories in the 3-D space is presented. T...
In this paper, a novel technique for online generating trajectories in the 3-D space is presented. T...
In this paper, a novel technique for online generating trajectories in the 3-D space is presented. T...
In this paper, a novel technique for online generating trajectories in the 3-D space is presented. T...
In this paper, a novel technique for online generating trajectories in the 3-D space is presented. T...
In this paper, a novel technique for online generating trajectories in the 3-D space is presented. T...
In this paper, a novel technique for online generating trajectories in the 3-D space is presented. T...
In this paper, the equivalence between uniform B-splines of degree p and the output of a chain compo...
In this paper, the equivalence between uniform B-splines of degree p and the output of a chain compo...
In this paper, the equivalence between uniform B-splines of degree p and the output of a chain compo...
In this paper, the equivalence between uniform B-splines of degree p and the output of a chain compo...
none2noIn this paper, the equivalence between uniform B-splines of degree p and the output of a chai...
none2noIn this paper, the use of FIR (Finite Impulse Response) filters for planning minimum-time tra...
In this paper, the use of FIR (Finite Impulse Response) filters for planning minimum-time trajectori...