Published July 15, 2026 | Version 2.1

Reproducibility Package: Assurance-Centered Architecture for Quantum-Resilient, Topology-Aware, AI-Assisted Mission Communications (v2.1)

Authors/Creators

  • 1. EDMO icon Georgetown University

Description

Reproducibility package (v2.1; model v2.0) for a synthetic evaluation of an assurance-centered, quantum-resilient, topology-aware mission-communications architecture with bounded AI assistance.

Contents include Python 3.11 simulation and figure-generation code, synthetic result datasets, configuration files, SHA256 checksums, and a README containing exact reproduction commands. The declared evaluation uses seed 20260712, six scenarios, five architecture variants, and 1,000 Monte Carlo runs per scenario, together with clustered bootstrap intervals, exact McNemar tests, sensitivity sweeps, and a 128-state authority-gate check.

Version 2.1 corrects order-dependent set traversal and normalizes compressed-output timestamps to support deterministic, byte-identical reproduction across independent Python processes.

The package evaluates architecture-level properties of a declared synthetic model only. It does not model an operational NASA or defense network, physical QKD channel, fielded waveform, classified topology, or implementation-level cryptography. It establishes no operational-effectiveness, security-certification, government-approval, or deployment-readiness claim.

The software code is released under the MIT License. Synthetic datasets are released under CC0 1.0, as documented within the package.

Files

Oktenli_QuantumComms_Reproducibility_v2_1.zip

Files (2.2 MB)

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Additional details

Software

Programming language
Python
Development Status
Active