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Controlling spatiotemporal chaos in coupled map lattice systems

Physical Review LettersPublished 3 January 1994
Gang Hu, Zhilin Qu
Citations293
SJR quartileQ1
SJR score2.86
SNIP2.41

TL;DR

Using this control equation and selecting different phase-space compression parameters to control spatiotemporal chaos in a coupled map lattice systems, the authors successfully obtain various desired stable patterns.

Abstract

A spatiotemporal system is modeled by a coupled map lattice. Feedback pinnings are used to control chaos of the system by stabilizing a certain unstable reference state. As the pinning distribution is dense enough, the unstable state can be stabilized. If the density is low, the reference state may not be approached asymptotically. In this case, however, the pinnings can still effectively suppress chaos and produce rich spatiotemporal structures. If a solution is locally stable while the transient process to this state is extremely long and chaotic, pinnings of very low density can well control the transient chaos.

Keywords

Computer SciencePhysics and Astronomy