We investigate elementary cellular automata from the point of view of (discrete) dynamical systems. By studying small lattice sizes, we obtain the complete phase space of all minimal elementary cellular automata, and, starting from a maximal entropy distribution (all configurations equiprobable), we show how the dynamics affects this distribution. We then investigate how a vanishing noise alters this phase space, connecting attractors and modifying the asymptotic probability distribution. What is interesting is that this modification not always goes in the sense of decreasing the entropy.
Effects of a Vanishing Noise on Elementary Cellular Automata Phase-Space Structure / Bagnoli, Franco; Baia, Michele; Matteuzzi, Tommaso. - STAMPA. - 14978 LNCS:(2024), pp. 45-57. (Intervento presentato al convegno Cellular Automata for Research and Industry, ACRI 2024 tenutosi a Florence, Italy nel September 9–11, 2024) [10.1007/978-3-031-71552-5_5].
Effects of a Vanishing Noise on Elementary Cellular Automata Phase-Space Structure
Bagnoli, Franco;Baia, Michele;Matteuzzi, Tommaso
2024
Abstract
We investigate elementary cellular automata from the point of view of (discrete) dynamical systems. By studying small lattice sizes, we obtain the complete phase space of all minimal elementary cellular automata, and, starting from a maximal entropy distribution (all configurations equiprobable), we show how the dynamics affects this distribution. We then investigate how a vanishing noise alters this phase space, connecting attractors and modifying the asymptotic probability distribution. What is interesting is that this modification not always goes in the sense of decreasing the entropy.File | Dimensione | Formato | |
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