Global time-delay autosynchronization is known to control spatiotemporal turbulence in oscillatory reactiondiffusion systems. Here, we investigate the complex Ginzburg-Landau equation in the regime of spatiotemporal turbulence and study numerically how local or a combination of global and local time-delay autosynchronization can be used to suppress turbulence by inducing uniform oscillations. Numerical simulations show that while a purely local control is unsuitable to produce uniform oscillations, a mixed local and global control can be efficient and also able to create other patterns such as standing waves, amplitude death, or traveling waves
One of the simplest ways to create nonlinear oscillations is the Hopf bifurcation. The spatiotempora...
A global time–delay feedback scheme is implemented experimentally to control chemical turbulence in ...
Experiments with catalytic oxidation of carbon monoxide on Pt(110) show that chemical turbulence in ...
Diffusion-induced turbulence in spatially extended oscillatory media near a supercritical Hopf bifur...
Turbulence in oscillatory distributed systems can be controlled by introducing a delayed global feed...
We suggest that diffusion-induced turbulence in distributed dynamical systems near a supercritical H...
A complex Ginzburg-Landau equation subjected to local and global time-delay feedback terms is consid...
The stabilization of periodic solutions in the regime of spatiotemporal chaos through a diffusion pa...
This paper studies the effects of a time-delayed feedback control on the appearance and development ...
We discuss some issues related with the process of controlling space-time chaotic states in the one...
We review experimental and theoretical studies on the design and control of spatiotemporal behavior ...
Effects of global delayed feedback on diffusion-induced turbulence are studied in a realistic model ...
Control of spatiotemporal chaos is one of the central problems of nonlinear dynamics. We report on s...
Turbulence control in the two-dimensional complex Ginzburg-Landau equation is investigated. An appro...
Using the model of the complex Ginzburg–Landau equation with global coupling, the influence of long‐...
One of the simplest ways to create nonlinear oscillations is the Hopf bifurcation. The spatiotempora...
A global time–delay feedback scheme is implemented experimentally to control chemical turbulence in ...
Experiments with catalytic oxidation of carbon monoxide on Pt(110) show that chemical turbulence in ...
Diffusion-induced turbulence in spatially extended oscillatory media near a supercritical Hopf bifur...
Turbulence in oscillatory distributed systems can be controlled by introducing a delayed global feed...
We suggest that diffusion-induced turbulence in distributed dynamical systems near a supercritical H...
A complex Ginzburg-Landau equation subjected to local and global time-delay feedback terms is consid...
The stabilization of periodic solutions in the regime of spatiotemporal chaos through a diffusion pa...
This paper studies the effects of a time-delayed feedback control on the appearance and development ...
We discuss some issues related with the process of controlling space-time chaotic states in the one...
We review experimental and theoretical studies on the design and control of spatiotemporal behavior ...
Effects of global delayed feedback on diffusion-induced turbulence are studied in a realistic model ...
Control of spatiotemporal chaos is one of the central problems of nonlinear dynamics. We report on s...
Turbulence control in the two-dimensional complex Ginzburg-Landau equation is investigated. An appro...
Using the model of the complex Ginzburg–Landau equation with global coupling, the influence of long‐...
One of the simplest ways to create nonlinear oscillations is the Hopf bifurcation. The spatiotempora...
A global time–delay feedback scheme is implemented experimentally to control chemical turbulence in ...
Experiments with catalytic oxidation of carbon monoxide on Pt(110) show that chemical turbulence in ...