MSO Protocol ICN 1.0418: Radical Efficiency and Transition from Binary Brute Force to Base 4 Native Precision
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Description
This document introduces the technical framework for the ICN 1.0418 protocol, a Base 4 native computing architecture (MSO - Multi-State Optimization) designed to overcome the "Silicon Wall" of binary Artificial Intelligence. While current systems waste up to 70% of their energy on logical friction and data transport, the MSO framework demonstrates a radical reduction in power consumption, dropping from 25 MW to 5 MW for a standard workload of 100,000 requests.
The study compares the efficiency of binary (B2), based on statistical probability, with the geometric resonance of quaternary (B4). The results highlight massive performance gains: a 1,500x acceleration and a significant reduction in processing latency (from 25 minutes to 1.2 seconds). Using plasma simulation (Tokamak type) as a use case, the document illustrates how eliminating statistical drift reduces computation time from 8 days to 8 hours. This protocol establishes a new standard for sovereign, explainable (native XAI), and energy-sustainable AI.
Series information
Architecture MSO : Protocole de référence : ICN 1.0418 | Base 4 natif | Science ouverte.
🔹 Kernel IA MSO: https://zenodo.org/records/19385044
🔹 Why Base 4? : https://zenodo.org/records/20070491
🔹 E2PE Énergie Libre: https://zenodo.org/records/19777131
🔹 Blog réflexion miroir : https://fouconnier-yannick.blogspot.com/
🔹 Proofs & Validations: https://github.com/fouconnieryannick/MSO_POO/wiki
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MSO_REFERENCE_RADICAL_EFFICIENCY_8DAYS_TO_8HOURS.pdf
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Related works
- Is cited by
- Presentation: 10.5281/zenodo.19467839 (DOI)
- Is supplemented by
- Publication: 10.5281/zenodo.19385044 (DOI)