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January 22, 20260 citationsOpen Access

Y.I.N. FORTRESS v3.1 ENHANCED: The Twelve-Pillar Reference Architecture for Complete Zero-Trust Hybrid Security with Blockchain Audit Trails, AI Remediation, and Dynamic Threat Intelligence

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IMIlyes Tarik MazariYMYanis MazariIE UniversityIMIlyan MazariÉcole Centrale de Lyon

Key Points

  • The aim is to present a mathematically complete architecture for zero-trust hybrid security utilizing twelve pillars across three zones.
  • Developed a twelve-pillar, three-zone architecture for zero-trust security
  • Introduced algorithms for blockchain audit trails, AI remediation, and dynamic threat intelligence
  • Validated performance metrics against specific targets for timing attack resistance, detection speedup, and accuracy degradation.
  • Achieved 640× timing attack resistance, exceeding the target of 340×
  • Reached 135× invalid detection speedup, outperforming the target of 10×
  • Maintained an accuracy degradation of 1.5pp, better than the target of 2.3pp.

Abstract

Y. I. N. FORTRESS presents a mathematically complete twelve-pillar, three-zone architecture for zero-trust hybrid security. Unlike detection-based solutions such as Wiz (Google's announced 32B acquisition, March 2025), FORTRESS provides mathematical proof of security completeness through the Zone-Pillar Completeness Theorem. The architecture organizes twelve pillars across three trust zones: CLOUD (CIPHER, COMPUTE, VAULT, SHADOW), CLIENT (GUARDIAN, KEYSTONE, SENTINEL, GENESIS), and OPERATIONS (HYDRA, PHOENIX, ORACLE, TRIBUNAL). Version 3. 1 introduces three enhancements protected by 115 claims in Patent 63/962, 736: (1) Algorithm 10 providing blockchain-based immutable audit trails with ML-DSA-87; (2) Algorithm 11 implementing AI-powered remediation with 85-92% accuracy; (3) Algorithm 12 enabling dynamic threat intelligence with CISA KEV integration. This publication establishes prior art for the twelve-pillar architecture, Zone-Pillar Completeness Theorem, and all enhancement algorithms. Validated performance: 640× timing attack resistance (target: 340×), 135× invalid detection speedup (target: 10×), 1. 5pp accuracy degradation (target: 2. 3pp). Patent Protected: 20+ USPTO Applications | 650+ Claims | Core: 63/943, 413, 63/962, 736 (115 claims) | Priority: November 23, 2025

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Cite This Study

Mazari et al. (2026) studied this question.

synapsesocial.com/papers/6971be10642b1836717e2c45https://doi.org/10.5281/zenodo.18307288
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