English

Bayesian Epistemology with Weighted Authority: A Formal Architecture for Truth-Promoting Autonomous Scientific Reasoning

Artificial Intelligence 2025-06-23 v1 Computation and Language Databases Logic in Computer Science Logic

Abstract

The exponential expansion of scientific literature has surpassed the epistemic processing capabilities of both human experts and current artificial intelligence systems. This paper introduces Bayesian Epistemology with Weighted Authority (BEWA), a formally structured architecture that operationalises belief as a dynamic, probabilistically coherent function over structured scientific claims. Each claim is contextualised, author-attributed, and evaluated through a system of replication scores, citation weighting, and temporal decay. Belief updates are performed via evidence-conditioned Bayesian inference, contradiction processing, and epistemic decay mechanisms. The architecture supports graph-based claim propagation, authorial credibility modelling, cryptographic anchoring, and zero-knowledge audit verification. By formalising scientific reasoning into a computationally verifiable epistemic network, BEWA advances the foundation for machine reasoning systems that promote truth utility, rational belief convergence, and audit-resilient integrity across dynamic scientific domains.

Keywords

Cite

@article{arxiv.2506.16015,
  title  = {Bayesian Epistemology with Weighted Authority: A Formal Architecture for Truth-Promoting Autonomous Scientific Reasoning},
  author = {Craig S. Wright},
  journal= {arXiv preprint arXiv:2506.16015},
  year   = {2025}
}

Comments

91 pages, 0 figures, includes mathematical appendix and formal proofs. Designed as a foundational submission for a modular autonomous epistemic reasoning system. Suitable for logic in computer science, AI epistemology, and scientific informatics