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May 11, 20262 citationsOpen Access

Unified Coherence–Projection Framework: Public-Safe Structural Formulation

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ISIvan Silva

Key Points

  • The aim is to establish a framework where observable structure stems from coherence and admissible projection from higher-order systems.
  • Introduced a coherence framework utilizing a geometric representation layer and triadic sphere systems.
  • Built on earlier work linking entropy to coherence deficit under projection.
  • Modeled finite observers as coherence substructures in bounded projection contexts.
  • Coherence deficit is demonstrated to arise from admissible projection rather than intrinsic disorder.
  • Structural time is proposed as emerging from irreversible coherence reduction.
  • The work dissects different elements of coherence theory and projection structure without focusing on specific implementations.

Abstract

This paper presents a public-safe coherence-based framework in which observable structure emerges through admissible projection from a higher-order relational manifold. Building on earlier work relating entropy to coherence deficit under projection, the framework introduces a constrained geometric representation layer based on triadic sphere systems, admissible tetrahedral decompositions, Gaussian occupancy fields, nonlinear projection coupling, and observer-relative coherence propagation. The framework treats entropy not as intrinsic disorder but as coherence deficit induced by admissible projection. Structural time emerges from irreversible coherence reduction rather than existing as a primitive parameter. Finite observers are modeled as embedded coherence substructures capable of sensing more relational structure than can be fully metabolized through bounded projection. The work explicitly separates: formal coherence-theoretic claims, admissible projection structure, geometric representation hypotheses, and speculative physical analogy. The publication intentionally omits implementation-specific invariants, optimization operators, convergence conditions, scaling bounds, recursive search procedures, and high-capability reconstruction mechanisms. This work is published through the Carlonoscopen Journal of Coherence Intelligence (CJCI) as a public-safe structural formulation intended for academic discussion of admissible projection, coherence entropy, observer-limited reconstruction, and relational structure under finite bandwidth constraints. Official CJCI publication:https://www.carlonoscopen.com/journal/v1i11

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Cite This Study

Ivan Silva (2026) studied this question.

synapsesocial.com/papers/6a0172813a9f334c28272adchttps://doi.org/10.5281/zenodo.20097285
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Also Consider

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  4. 4Layered_Reality_Observer_Bounded_Coherence2026
  5. 5On the Selection of Physical Structure from Non-Geometric Coherence2026