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April 14, 20260 citationsOpen Access

Coexistence Compatibility as a Constraint on Realizability in Complex Systems

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ARAndrea Romeo

Key Points

  • The research aims to analyze complex systems by considering coexistence constraints that affect global realizability.
  • Introduced a minimal framework for complex systems analysis.
  • Defined an incompatibility functional I(C) to capture interaction-induced constraints.
  • Introduced the Congruity Index of States (ICS) to measure configuration quality.
  • Utilized a toy model and multi-agent simulations to illustrate findings.
  • Showed system capacity is often limited by incompatibility growth, not just local constraints.
  • Demonstrated that many scalability limits in AI and computing can be viewed as compatibility constraints.

Abstract

This preprint introduces a minimal framework for analyzing complex systems under coexistence constraints. While traditional approaches focus on local feasibility (stability, energy, structural validity), this work shows that such properties are not sufficient to guarantee global realizability when multiple states must coexist. We define an incompatibility functional I(C) capturing interaction-induced constraints and introduce the Congruity Index of States (ICS) as a quantitative measure of configuration quality. Through a toy model, a multi-agent simulation and analogies with concurrent systems and physical computing, the work shows that system capacity is often limited by the growth of incompatibility rather than by local constraints alone. The framework suggests that many scalability limits observed in AI, distributed computing and physical systems can be interpreted as manifestations of compatibility constraints under coexistence.

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Cite This Study

Andrea Romeo (2026) studied this question.

synapsesocial.com/papers/69ddda22e195c95cdefd7995https://doi.org/10.5281/zenodo.19546271
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