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SIAM Journal on Applied Dynamical Systems

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Algorithms for Rigorous Entropy Bounds and Symbolic Dynamics

SIAM J. Appl. Dyn. Syst. Volume 7, Issue 4, pp. 1477-1506 (2008)

Published December 3, 2008
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The aim of this paper is to introduce a method for computing rigorous lower bounds for topological entropy. The topological entropy of a dynamical system measures the number of trajectories that separate in finite time and quantifies the complexity of the system. Our method relies on extending existing computational Conley index techniques for constructing semiconjugate symbolic dynamical systems. Besides offering a description of the dynamics, the constructed symbol system allows for the computation of a lower bound for the topological entropy of the original system. Our overall goal is to construct symbolic dynamics that yield a high lower bound for entropy. The method described in this paper is algorithmic and, although it is computational, yields mathematically rigorous results. For illustration, we apply the method to the Hénon map, where we compute a rigorous lower bound of 0.4320 for topological entropy.

©2008 Society for Industrial and Applied Mathematics
History: Received April 12, 2007; accepted July 24, 2008; published December 3, 2008
Permalink: http://dx.doi.org/10.1137/070688080

KEYWORDS and AMS

Keywords
AMS Subject Classifications
37B10, 37B40, 37B30, 37C25, 37M99

PUBLICATION DATA

ISSN:
1536-0040 (online)
Publisher:
AIP is a member of CrossRef SIAM

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