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March 18, 20260 citationsOpen Access

Self-Organising Systems: Admissibility and Emergent Structure in Complex Systems

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APAndrew John Paton

Key Points

  • This research aims to interpret self-organising systems through the lens of admissibility and emergent structures.
  • Utilized the Paton System framework for interpretation
  • Examined local interactions in complex systems
  • Analyzed how structural relationships emerge through constraints
  • Identified conditions under which systems stabilize through compatible interactions
  • Highlighted the risks of system collapse when interactions exceed admissible limits
  • Demonstrated the relevance of structural interpretations in understanding emergent order

Abstract

Many complex systems exhibit the capacity to organise structure without centralised control. Such systems arise through local interactions between components that collectively produce coherent global behaviour. Examples include biological pattern formation, flocking behaviour in animal groups, distributed computation networks, and large-scale social organisation. This paper interprets self-organising systems within the Paton System framework as processes in which admissible structural relationships emerge through local constraint compatibility. System organisation arises when interactions between components remain compatible with structural and environmental constraints. When these interactions exceed admissible limits, system organisation may destabilise or collapse. Understanding self-organisation through admissibility provides a structural interpretation of emergent order in complex systems.

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Cite This Study

Andrew John Paton (2026) studied this question.

synapsesocial.com/papers/69ba42cf4e9516ffd37a3704https://doi.org/10.5281/zenodo.19047649
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