Unstable periodic orbits (UPOs) of an experimental chaotic pendulum were stabilized using a semi- continuous control method (SCC), applying control actions several times per cycle. One advantage of this method, compared to a one-map-based control method such as the Ott-Grebogi-Yorke method [Phys. Rev. Lett. 64, 1196 (1990)], is the applicability to systems with relatively large unstable eigenvalues and/or high noise levels. Compared to a continuous type of feedback control as was proposed by Pyragas [Phys. Lett. A 170, 421 (1992)], the advantage is that the controller settings can be measured from experimental data. Because the control method uses delay coordinates, only one variable has to be measured. This paper describes an SCC method us...
A feedforward neural network was trained to predict the motion of an experimental, driven, and dampe...
We devise a modified delayed feedback control algorithm that allows one to stabilize unstable target...
In this thesis, we studied the act-and-wait control mechanism on the stabilization of the inverted p...
Unstable periodic orbits (UPOs) of an experimental chaotic pendulum were stabilized using a semi- co...
Chaos has an intrinsically richness related to its structure and, because of that, there are benefit...
Linear feedback control, specifically model predictive control (MPC), was used successfully to synch...
Finding unstable periodic orbits (UPOs) is always a challenging demand in biophysics and computation...
We study the control of chaos in an experiment on a parametrically excited pendulum whose excitation...
Time delayed-feedback control is an efficient method for stabilizing unstable periodic orbits of cha...
This paper investigates the problem of stabilising one of the high order periodic orbits of a chaoti...
Chaos is a typical phenomenon in nonlinear dynamical systems. Until recently, the extreme sensitivit...
We review recent developments for the control of chaos by time-delayed feedback methods. While such ...
Time-delayed feedback control is an efficient method for stabilizing unstable periodic orbits of cha...
A model-reference adaptive control strategy is proposed for a delay chaotic system with known or unk...
We present an experimental procedure to track periodic orbits through a fold (saddle-node) bifurcati...
A feedforward neural network was trained to predict the motion of an experimental, driven, and dampe...
We devise a modified delayed feedback control algorithm that allows one to stabilize unstable target...
In this thesis, we studied the act-and-wait control mechanism on the stabilization of the inverted p...
Unstable periodic orbits (UPOs) of an experimental chaotic pendulum were stabilized using a semi- co...
Chaos has an intrinsically richness related to its structure and, because of that, there are benefit...
Linear feedback control, specifically model predictive control (MPC), was used successfully to synch...
Finding unstable periodic orbits (UPOs) is always a challenging demand in biophysics and computation...
We study the control of chaos in an experiment on a parametrically excited pendulum whose excitation...
Time delayed-feedback control is an efficient method for stabilizing unstable periodic orbits of cha...
This paper investigates the problem of stabilising one of the high order periodic orbits of a chaoti...
Chaos is a typical phenomenon in nonlinear dynamical systems. Until recently, the extreme sensitivit...
We review recent developments for the control of chaos by time-delayed feedback methods. While such ...
Time-delayed feedback control is an efficient method for stabilizing unstable periodic orbits of cha...
A model-reference adaptive control strategy is proposed for a delay chaotic system with known or unk...
We present an experimental procedure to track periodic orbits through a fold (saddle-node) bifurcati...
A feedforward neural network was trained to predict the motion of an experimental, driven, and dampe...
We devise a modified delayed feedback control algorithm that allows one to stabilize unstable target...
In this thesis, we studied the act-and-wait control mechanism on the stabilization of the inverted p...