🔐 The Open Verification Layer

A transparent roadmap of our cryptographic architecture and acoustic simulation frameworks.
Open methodology. Planned public release. Independent municipal auditing pathway.

Choose Your Path to Verification

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Technical Supplement

Comprehensive Due Diligence Pack

Complete technical artifacts package including data integrity frameworks, ground truth verification methods, ROI calculations, risk assessments, and scalability roadmaps.
Audience: Investors, SABESP Board, City Officials, CFOs, Non-Technical Stakeholders
  • Data Integrity & Verification Framework
  • Ground Truth Data Sources
  • ROI & Financial Projections
  • Risk Mitigation Strategies
  • Scalability Assessments
  • Peer Review Documentation (348 KB)
  • Technical Audit Report (200 KB)
Download Technical Supplement
PDF • 348 KB • ISO-G Protocol

Sovereign Axioms

Planned Open-Source Cryptographic Framework

Status: Closed Development — The cryptographic frameworks and acoustic simulation models detailed below are currently in closed development. They are slated for phased MIT-licensed public release on GitHub to allow for independent municipal auditing.

A planned Rust Bulletproofs ZKP system and Python acoustic simulation suite for The Green Code's water-infrastructure verification layer. Released openly for municipal auditor and security-researcher review upon completion.
Audience: Math Peers, Security Auditors, Cryptographers, Developers, Open-Source Community
  • Rust Bulletproofs Implementation (planned)
  • Python Acoustic Simulations (planned)
  • ZKP Circuit Diagrams (planned)
  • Design Targets & Architecture Specs
  • API Documentation Roadmap
  • MIT License · Planned Q4 2026 Public Release
Consolidated Audit Ledger
Internal Ledger • Validated via Multi-Model LLM Engineering Consensus

🗺️ Planned Open-Source Roadmap

The four repositories below are in closed development. Descriptions and planned tech stacks are published here as roadmap material for prospective municipal auditors and security researchers.

Open-Source Release Status · Closed Development
These repositories do not yet exist on GitHub.
The cryptographic frameworks and acoustic simulation models detailed below are currently in closed development. They are slated for a phased MIT-licensed public release on GitHub to allow for independent municipal auditing. Release timeline: Q4 2026 (target). All figures shown are design targets, not measured results from live code.

sovereign-axioms

Planned Zero-Knowledge Proofs for acoustic leak detection. Rust implementation of Bulletproofs range proofs with custom circuit design for water infrastructure verification.

Rust Bulletproofs ZKP
Target Latency: <20ms  ·  Target Architecture: NVIDIA GB200 NVL72
Release: Q4 2026

acoustic-simulator

Planned Python-based acoustic propagation models. Will simulate 35–55 kHz resonance patterns in ductile iron and PVC infrastructure for ground truth validation.

Python NumPy SciPy
Target Band: 35–55 kHz  ·  Target Architecture: NVIDIA GB200 NVL72
Release: Q4 2026

lambda-calibrator

Planned Project Nimbus atmospheric correction engine. λ-factor calculation based on humidity, temperature, soil moisture, and atmospheric pressure for subterranean pressure model calibration.

Python TensorFlow Weather API
Status: In Internal Review

teta-key-protocol

Planned hardware authentication system specifications. 35.547 kHz haptic feedback protocol with biometric handshake for human-in-the-loop governance and Anchor veto authority.

C++ Arduino Hardware
Status: In Internal Review
Consolidated Audit Ledger

GitHub repositories will be linked here upon phased release. Municipal auditors and security researchers are invited to register interest via the Consolidated Audit Ledger.

🎯 Design Targets & Architecture Specifications

Forward-looking engineering targets established for the planned open-source release.

!

These specifications have not been validated against deployed code. They are targets established for the planned open-source release (Q4 2026) and are subject to revision pending field testing on the NVIDIA GB200 NVL72 liquid-cooled architecture.

ZKP Verification Time
<20ms
Target latency for Bulletproofs range proof verification. Target
Architecture: NVIDIA GB200 NVL72 Liquid-Cooled
Proof Size
<1 KB
Target Bulletproofs range proof size. Constant-size cryptographic commitment regardless of data volume. Logarithmic scaling for aggregated proofs. Target
False Positive Rate
1.5%
Target acoustic detection accuracy with λ-correction. 98.5% precision target in distinguishing leaks from environmental noise. Requires field calibration per pipe material and burial depth. Target
Energy Per Proof
<0.1 J
Target energy consumption for one ZKP containment event verification. Enables high-efficiency water-per-energy ratio design target. Not yet benchmarked against deployed code. Target
Resonance Frequency
35-55 kHz
Target acoustic detection band for 140 Hz leak signature (135–145 Hz) across pipe materials (PVC, ductile iron, cast iron, composite). Hardware selection pending; detection range requires field calibration per deployment site. Target
Test Coverage
>90%
Target code coverage across Rust codebase. Property-based testing (PropTest) framework planned for all critical ZKP paths. Target

📚 Additional Technical Documentation

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Technical Audit

Due Diligence Report
200 KB • ISO-G Protocol

Download
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ROI Ledgers

Financial Projections
159 KB + 74 KB

ROI Abundance
🔬

Peer Review Path

Public Repository Pack
349 KB • Open Verification

Download

Open Roadmap. Absolute Transparency.

Every design target is documented. Every methodology is disclosed. Every repository is on a published release timeline.
This is The Open Verification Layer — built in the open, from day one.

Consolidated Audit Ledger Download All Docs