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Authors: Greg Paperin and Suzanne Sadedin

Affiliation: Monash University, Australia

ISBN: 978-989-674-014-6

Keyword(s): Dual phase evolution, Networks, Connectivity, Phase changes, Self-organised criticality, Adaptive cycle.

Related Ontology Subjects/Areas/Topics: Artificial Intelligence ; Artificial Life ; Biocomputing and Complex Adaptive Systems ; Computational Intelligence ; Evolutionary Computing ; Soft Computing

Abstract: Evidence from several fields suggests that dual phase evolution (DPE) may account for distinctive features associated with complex adaptive systems. Here, we review empirical and theoretical evidence for DPE in natural systems and examine the relationship of DPE to self-organized criticality and adaptive cycles. A general model for DPE in networks is outlined, with preliminary data illustrating the emergence of phase changes.

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Paper citation in several formats:
Paperin G. and Sadedin S. (2009). THE DUAL PHASE EVOLUTION FRAMEWORK FOR UNDERSTANDING EVOLUTIONARY DYNAMICS IN COMPLEX ADAPTIVE SYSTEMS.In Proceedings of the International Joint Conference on Computational Intelligence - Volume 1: ICEC, (IJCCI 2009) ISBN 978-989-674-014-6, pages 135-143. DOI: 10.5220/0002320601350143

@conference{icec09,
author={Greg Paperin and Suzanne Sadedin},
title={THE DUAL PHASE EVOLUTION FRAMEWORK FOR UNDERSTANDING EVOLUTIONARY DYNAMICS IN COMPLEX ADAPTIVE SYSTEMS},
booktitle={Proceedings of the International Joint Conference on Computational Intelligence - Volume 1: ICEC, (IJCCI 2009)},
year={2009},
pages={135-143},
publisher={SciTePress},
organization={INSTICC},
doi={10.5220/0002320601350143},
isbn={978-989-674-014-6},
}

TY - CONF

JO - Proceedings of the International Joint Conference on Computational Intelligence - Volume 1: ICEC, (IJCCI 2009)
TI - THE DUAL PHASE EVOLUTION FRAMEWORK FOR UNDERSTANDING EVOLUTIONARY DYNAMICS IN COMPLEX ADAPTIVE SYSTEMS
SN - 978-989-674-014-6
AU - Paperin G.
AU - Sadedin S.
PY - 2009
SP - 135
EP - 143
DO - 10.5220/0002320601350143

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