Protecting the Orbital Commons
The Aevum Zenth Debris Mitigation Program addresses the growing threat of space debris across Low Earth Orbit (LEO), Medium Earth Orbit (MEO), and Geostationary Orbit (GEO). By integrating cross-divisional capabilities from Aerospace, Advanced Robotics, and Zenth Digital Systems, we deliver end-to-end solutions ranging from passive mitigation design to active debris removal (ADR) missions.
Our mission architecture prioritizes predictive collision avoidance, automated end-of-life deorbiting, and modular capture systems compliant with international space traffic management frameworks.
Current cataloged orbital debris exceeds 36,000 objects >10cm, with millions of sub-centimeter fragments posing kinetic risks to operational satellites, crewed missions, and space stations. Our program reduces collision probability by up to 94% through real-time tracking, AI-driven maneuver planning, and certified disposal protocols.
Mitigation Systems & Capabilities
We deploy a layered technology stack designed for scalability across government, commercial, and international partnership frameworks.
Optical & Radar Tracking Network
Ground-based and space-based sensor fusion providing sub-meter precision tracking for objects down to 5cm in LEO.
Autonomous Capture Vehicles
Robotic end-effectors utilizing harpoons, nets, and magnetic clamps for non-cooperative object capture and secure stowage.
Electrodynamic Tethers
Drag-augmentation systems generating controlled atmospheric drag for passive deorbiting of defunct satellites.
AI Collision Prediction Engine
Machine learning models processing TLE data, conjunction assessments, and maneuver optimization across fleet constellations.
Operational Workflow
Our debris mitigation pipeline follows a closed-loop architecture designed for rapid deployment and continuous improvement.
| Phase | Function | Responsibility |
|---|---|---|
| 1. Detection & Cataloging | Multi-spectral scanning, TLE validation, fragmentation modeling | Zenth Digital Systems |
| 2. Risk Assessment | Conjunction probability, orbital lifetime prediction, collision impact simulation | Aevum Advanced Research |
| 3. Intervention Planning | Maneuver delta-V calculation, capture mechanism selection, fuel budgeting | Orbital Operations Division |
| 4. Execution & Disposal | Robotic capture, controlled reentry, graveyard orbit transfer, atmospheric burn-up | Aerospace & Robotics Labs |
Regulatory Alignment
All mitigation operations are designed and executed in strict accordance with international space law and industry best practices.
- ISO 24113:2019 (Space systems — Space debris mitigation requirements)
- UN COPUOS Space Debris Mitigation Guidelines
- ESA Space Safety Programme Certification
- IADC Space Debris Mitigation Standards
- FAA & FAA-AST Launch & Reentry Licensing Compliance