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April 20, 20260 citationsOpen Access

Sovereign Epistemological Memory and Reasoning System: A Trilaminar Epistemological Architecture for Agentic AI

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GKGrzegorz Kwaśniewski

Key Points

  • The aim is to address the epistemic crisis in knowledge management for AI systems through a three-layered architectural approach.
  • Introduced Bastian A-000 as an agentic AI system designed with a trilaminar memory architecture.
  • Developed measures like the Authenticity Density Indicator to assess knowledge reliability and stability.
  • Implemented structures for detecting semantic drift and retroactively revaluating knowledge.
  • Demonstrated improved internal knowledge utilization without reliance on external retrieval systems.
  • Showed the ability to correct its own outputs, ensuring factual accuracy without external input.
  • Established a new framework for understanding causal and epistemic properties in knowledge systems.

Abstract

Sovereign Epistemological Memory and Reasoning System: A Trilaminar Epistemological Architecture for Agentic AI The ambition to build a 'Brain' for the knowledge worker is hampered by an epistemic crisis: information is perceived as dispersed, unstructured, and unverifiable. Standard RAG systems perpetuate this by treating knowledge as flat labeled entities — accumulating without epistemological rigor. This paper introduces Bastian A-000, an agentic AI memory and reasoning system designed to resolve this crisis architecturally. Its atomic unit of knowledge — the Symbolat — exists as a three-dimensional entity comprising intentional signal (BIO), documentary fact (PHY), and derived inference (ABS). This structural correspondence with Peirce's triadic categories establishes a computable epistemology for sovereign AI. (1) Sovereign Temporal Physics (C24 Metronome): Time is implemented as an irreversible Virtual Tick Counter rather than a metadata timestamp, enabling causal verification and knowledge decay as structural properties. (2) Deterministic Meta-Cognitive Arbitration (GA): The Authenticity Density Indicator (GA = PHY / (ABS + 0. 01) ) provides a computable measure of factual grounding, enabling the system to architecturally bypass external retrieval when internal knowledge suffices — without reinforcement learning. (3) Semantic Drift Detection (Sₚryt): The Instability Coefficient tracks change in GA across sessions, detecting when knowledge becomes unstable before performance degradation occurs. (4) Epistemological Retrospection: When a new epistemic mechanism is introduced, all prior knowledge atoms are retroactively revaluated through the new apparatus — a form of self-improvement distinct from continual learning and knowledge graph refinement. (5) Epistemic Self-Correction in Production: A documented case study demonstrates the system applying its own B-NTP Gate diagnostic to its own textual output, identifying KLASA-1 hallucination (high ABS, low PHY) and producing a corrected, PHY-grounded version without external intervention. The architecture is grounded philosophically in Peirce's triadic categories (BIO/PHY/ABS as Firstness/Secondness/Thirdness), Kępiński's information metabolism (sedimentation over registration), and Popper's falsifiability hierarchy (PHY layer typing). The paper positions Bastian as a response to the meta-cognitive deficit identified by Yan et al. (2026) and to broader challenges in building knowledge systems for knowledge workers (Fant, 2026; Pinar, 2026). Developed by a single independent researcher using Python and Gemini 2. 5 Flash, Claude. Keywords: agentic AI, epistemological architecture, trilaminar memory, knowledge representation, causal hypergraph, semantic drift, RAG, alignment, meta-cognition, Peirce, Kępiński.

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Cite This Study

Grzegorz Kwaśniewski (2026) studied this question.

synapsesocial.com/papers/69e5c42603c2939914029c46https://doi.org/10.5281/zenodo.19643920
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Also Consider

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

  1. 1Sovereign Epistemological Memory and Reasoning System: A Trilaminar Epistemological Architecture for Agentic AI2026
  2. 2AgentBrain: A Layered Cognitive Memory Architecture for Long-Lived AI Agents2026
  3. 3Codette: A Sovereign Modular Cognitive Architecture for Ethical Multi-Agent AI2026
  4. 4A Forensic Lexicon for the Agentic Era — Architectural Primitives of the Sovereign Spine2026
  5. 5Toward Versioned Epistemic Memory for Reliable Agentic AI: Convergent Evidence from Performance Optimization, Spatial Reasoning, and Human-AI Collaboration2026