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  4. Formal Definitions of Unbounded Evolution and Innovation Reveal Universal Mechanisms for Open-Ended Evolution in Dynamical Systems
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Formal Definitions of Unbounded Evolution and Innovation Reveal Universal Mechanisms for Open-Ended Evolution in Dynamical Systems

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Title
Formal Definitions of Unbounded Evolution and Innovation Reveal Universal Mechanisms for Open-Ended Evolution in Dynamical Systems
Description
Open-ended evolution (OEE) is relevant to a variety of biological, artificial and technological systems, but has been challenging to reproduce in silico. Most theoretical efforts focus on key aspects of open-ended evolution as it appears in biology. We recast the problem as a more general one in dynamical systems theory, providing simple criteria for open-ended evolution based on two hallmark features: unbounded evolution and innovation. We define unbounded evolution as patterns that are non-repeating within the expected Poincare recurrence time of an isolated system, and innovation as trajectories not observed in isolated systems. As a case study, we implement novel variants of cellular automata (CA) where the update rules are allowed to vary with time in three alternative ways. Each is capable of generating conditions for open-ended evolution, but vary in their ability to do so. We find that state-dependent dynamics, regarded as a hallmark of life, statistically out-performs other candidate mechanisms, and is the only mechanism to produce open-ended evolution in a scalable manner, essential to the notion of ongoing evolution. This analysis suggests a new framework for unifying mechanisms for generating OEE with features distinctive to life and its artifacts, with broad applicability to biological and artificial systems.
Date Created
2017-04-20
Contributors
  • Adams, Alyssa (Author)
  • Zenil, Hector (Author)
  • Davies, Paul (Author)
  • Walker, Sara (Author)
  • College of Liberal Arts and Sciences (Contributor)
  • BEYOND: Center for Fundamental Concepts in Science (Contributor)
  • Department of Physics (Contributor)
  • School of Earth and Space Exploration (Contributor)
  • ASU-SFI Center for Biosocial Complex Systems (Contributor)
Resource Type
Text
Extent
15 pages
Language
eng
Copyright Statement
In Copyright
Reuse Permissions
Attribution
Primary Member of
ASU Regents' Professors Open Access Works
Identifier
Digital object identifier: 10.1038/s41598-017-00810-8
Identifier Type
ISSN (International Standard Serial Number)
Identifier Value
2045-2322
Series
SCIENTIFIC REPORTS
Handle
https://hdl.handle.net/2286/R.I.44682
Preferred Citation

Adams, A., Zenil, H., Davies, P. C., & Walker, S. I. (2017). Formal Definitions of Unbounded Evolution and Innovation Reveal Universal Mechanisms for Open-Ended Evolution in Dynamical Systems. Scientific Reports, 7(1). doi:10.1038/s41598-017-00810-8

Level of coding
minimal
Cataloging Standards
asu1
Note
The final version of this article, as published in Scientific Reports, can be viewed online at: http://www.nature.com/articles/s41598-017-00810-8
System Created
  • 2017-07-03 02:02:19
System Modified
  • 2021-08-16 02:23:30
  •     
  • 4 years 10 months ago
Additional Formats
  • OAI Dublin Core
  • MODS XML

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