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May 29, 20260 citationsOpen Access

Admissible Transition Systems with Induced Geometry and Transparent Transition Readouts

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JHJarkko HurmeMLMika-Petri LaakkonenSHSari Harmoinen

Key Points

  • The aim is to establish a framework that connects admissible transitions with induced geometry in discrete decision systems.
  • Introduced a neighborhood-free formulation to eliminate predefined graph proximity.
  • Defined observable behavior induced by admissible transition structures.
  • Constructed a Markov-type readout from observed transitions.
  • Successfully linked geometrical structure with observable processes.
  • Demonstrated separation of structural elements from stochastic interpretations.
  • Illustrated applicability to various systems including automation and human-in-the-loop scenarios.

Abstract

This paper develops a structural framework for discrete decision systems in which admissible transitions define the induced geometry of observable processes. The framework introduces a neighborhood-free formulation that avoids predefined graph proximity and probabilistic assumptions. Instead, admissible transition structures are treated as the primary object from which notions of geometry, paths, costs, and observable behavior are induced. A transparent Markov-type readout is constructed directly from observed transitions, separating the structural layer from stochastic interpretation. The framework is applicable to discrete transition systems, automation, human-in-the-loop systems, and explainable AI settings.

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Cite This Study

Hurme et al. (2026) studied this question.

synapsesocial.com/papers/6a192ee7fab5b468c4418375https://doi.org/10.5281/zenodo.20407358
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Transitions Are Structurally Constrained: A Unified Framework of Admissibility, Activation, and Transition Regimes in Complex Systems2026
  2. 2A Structural Admissibility Framework for Regime-Constrained Transitions in Complex Systems2026
  3. 3Admissible Flow and Resolution A Structural Account of the Tier 2 → Tier 3 → Tier 4 Transition2026
  4. 4Admissible Regions and Boundary Geometry: The Structural Shape of Constraint-Compatible Systems2026
  5. 5Deterministic Readout from an Admissible Arithmetic Formwork2026