A.E.G.I.S: Aerial Environmental & Geospatial Intelligence System

Accelerating defense technologies with secure, decentralized reconnaissance.

Project Vision & Objectives

  • Tamper-Proof Network

    Establish an AI-driven surveillance network with human oversight.

  • Seamless Integration

    Integrate effortlessly with existing Global command structures.

  • Data Integrity

    Ensure data integrity using advanced blockchain technology.

Key Objectives & NATO Alignment

  • Autonomous Mission Execution

    Supports DIANA's focus on AI and autonomy in defense.

  • Blockchain-Secured Data Logging

    Aligns with NATO's stringent cybersecurity standards.

  • Decentralized Command & Control

    Enhances resilience, preventing single-point failures.

Blockchain and AI

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Core Technologies Overview

Category Key Technologies Purpose
Blockchain Hyperledger Besu, Solidity Secure mission execution & logging
AI/Autonomy TensorFlow, OpenCV Device navigation & object detection
Data Storage IPFS, PostgreSQL Decentralized media & metadata
Security TLS 1.3, AES-256 End-to-end encryption

AI/ML+ Blockchain architectural flow

architectural

System Architecture

Architecture

Integration

Integration

The system integrates Hyperledger Besu for a private NATO like blockchain, IPFS Cluster for distributed storage, and DJI SDK for certified drone operations, ensuring robust and secure data handling.

Operational Features: AI & Blockchain Synergy

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Autonomous Triggers

Smart Contracts automate device deployment, waypoint verification, and emergency protocols.

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Computer Vision

Enables real-time object recognition and anomaly detection alerts.

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Secure Data Flow

Devices encrypt data with AES-256, store media on IPFS, and log metadata to Hyperledger for NATO access via TLS 1.3.

Compliance & Security

  • 1
    Encryption Standards

    Utilizes NSA-approved cryptographic standards for all data.

  • 2
    Hardware Compliance

    Ensures all devices meet STANAG-compliant hardware specifications.

  • 3
    Access Control

    Implements PKI-based identity verification for secure access.

Deployment Specifications

Component Specification
Blockchain Nodes 3x NATO-secured servers (Min 32GB RAM)
IPFS Cluster 5-node private network
Device OS Ubuntu 22.04 LTS (NATO Hardened)

Conclusion: Ready for Review

  • Battle-Proven

    Combines robust hardware and software.

  • Unbreakable Data

    Ensures integrity through advanced security.

  • Future-Ready

    Designed with scalable, adaptable architecture.

This system is approved and ready for A.E.G.I.S Technical Review.

A.E.G.I.S Surveillance System – User Journeys

HR Journey
Admin User Journey

Key Responsibilities: Manage user access, roles, and Global security protocols; monitor system-wide integrity.

Workflow:

  • Authenticate via admin credentials to access the Dashboard.
  • Approve/revoke Operator/Pilot accounts, assign NATO clearance levels (CONFIDENTIAL/TOP SECRET).
  • Deploy smart contract templates and set geofencing rules for missions.
  • Review blockchain logs for anomalies and generate NATO-standard reports.

Outcome: Ensures system operates within global security policies and compliance frameworks.

HR Journey
Operator User Journey

Key Responsibilities: Plan and launch surveillance missions, monitor autonomous devices, and coordinate with human pilots.

Workflow:

  • Authenticate via 2FA (SMS + NATO email) to access the Mission Control Dashboard.
  • Define waypoints on encrypted NATO maps, select devices (e.g., DJI M300 drones), and assign AI/human pilots.
  • Confirm mission via blockchain-signed smart contract; monitor real-time feeds with AI anomaly detection.
  • Review IPFS-stored footage and verify blockchain logs for tampering.

Outcome: Executes tamper-proof surveillance missions aligned with global Rules of Engagement (ROE).

HR Journey
Pilot User Journey

Key Responsibilities: Supervise autonomous device operations, intervene manually if required, and verify data captures.

Workflow:

  • Authenticate via biometrics + UPIT (Unique Personal Identification Token) to access the Pilot Console.
  • Review waypoints and ROE, confirm device readiness checks.
  • View live drone feeds with AI-assisted tagging; intervene via manual control takeover if thresholds are breached.
  • Sign off on blockchain mission logs and flag incidents for review.

Outcome: Maintains human-in-the-loop control for critical Global compliance.

HR Journey
NATO Command Journey

Key Actions : Access aggregated mission data, request forensic audits via blockchain, and coordinate cross-team deployments.

Interface Features:

  • Blockchain Explorer for transparent mission verification.
  • IPFS Media Vault with NATO grade encryption for secure access to surveillance footage.
  • Interoperability with existing Global C2 systems (e.g., AWACS) for seamless integration.

Outcome: Provides strategic oversight and ensures comprehensive intelligence gathering.

User Journey Summary: Technical Enablers

  • Role-Based Access Control (RBAC)

    NATO clearance levels are strictly enforced via blockchain-based smart contracts, ensuring secure and granular access permissions.

  • Human-Machine Teaming

    AI handles approximately 90% of routine surveillance tasks, allowing human pilots to intervene only for critical exceptions and strategic decision-making.

  • Immutable Accountability

    Every operational action and data point is logged to Hyperledger Besu with NATO digital signatures, providing an unalterable audit trail for accountability.

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