VERTEX OS · Autonomous Decision Engine

The operating layer
for autonomous
constellations.

VERTEX OS is SCALOS's autonomous decision engine — the infrastructure layer that sits between orbital physics and on-orbit execution.

Request Access →
Capability Stack

What VERTEX OS Does.

01Collision Avoidance

Avoidance Decision Engine

Evaluates conjunction risk and prescribes maneuver under uncertainty. Processes the full threat distribution — not just Pc — before any command executes in orbit.

02Constellation Coordination

Multi-Agent Coordination

Cooperative swarm policy at constellation scale. Multi-agent coordination without ground-in-the-loop — energy-optimal, conflict-free, validated in simulation.

03Navigation

Distributed Navigation

State estimation and uncertainty propagation across agents with intermittent ground contact. Trains on degraded measurement environments from our sensor simulation layer.

04Ops Intelligence

Operations Intelligence Agent

Natural language interface for scenario planning, anomaly triage, and decision audit. RAG-backed context over your mission history and constellation state.

Under the Hood

The SCALOS
Architecture

08Contested Environment Reasoning
07Distributed Autonomy Coordination
06Closed-Loop Decision Execution
── THE BOUNDARY ──
05Decision Support (Human-in-Loop)
04Predictive Scenario Evaluation
03Digital Twin Integration
02Multi-Physics Simulation
01Astrodynamics & Orbit Propagation

Validation Pipeline

Code Commit
SCALOS Trigger
Scenario Batch
Autonomous Execution
Pass / Fail
Integration

Works With Your Stack.

cFS-compatible

Deploys into NASA Core Flight System environments without modification to the flight software stack.

Digital twin integration

Consumes simulation outputs from existing high-fidelity environments — no vendor lock-in.

API-first

REST + WebSocket interfaces for operator dashboards, ground systems, and external data feeds.

Engagement

See it operate.
Then decide.

Calling on satellite operators, defense primes, and government stakeholders building the next generation of autonomous space infrastructure. If orbital autonomy is a priority — we should be talking.

Actively engaging with government and commercial space operators
Simulation environment operational — demos available on request
Built by engineers with backgrounds in aerospace, autonomy, and defense systems

Request an Operational Demo

Response within 24 hours