Autonomous navigation and docking for small-satellite constellations — the swarm that runs orbit without ground control.
Backed by ex-Airbus & OneWeb engineers

No human in the loop. Each satellite reads the neighborhood, plans a safe maneuver, and negotiates with the next node in microseconds.
Onboard ML models continuously redistribute traffic between orbital planes to balance coverage and thermal load.
A mesh protocol lets satellites coordinate maneuvers directly — ground stations enter the loop only for audit, not for control.
Predictive conjunction screening with 99.97% accuracy, validated against 18 months of NORAD catalog replay.
Trajectory optimization extends operational lifespan by ~30% and cuts propellant use by 40% versus scripted burns.
We are a team of flight-dynamics and autonomy engineers who spent a decade scripting burns by hand. OrbitWeave is the operating system we wished we had.
engineers, mostly ex-Airbus Defence and OneWeb flight dynamics
patents filed on swarm handshake and on-board maneuver planning
in-orbit demo satellite, launched Q3 2025 to validate the autonomy stack

Measured on our demo satellite and on customer constellation simulations running the same autonomy stack.
40%
100+
99.97%
+18 mo
Three product surfaces, one autonomy stack. Pick the integration that fits your operations team.
On-board autonomy runtime: mesh handshake, conjunction screening, maneuver planner. Drops into existing OBCs via a C++ SDK and a flight-heritage scheduler.
Ground planner and simulator. Replay 30 days of catalog in 3 minutes, stress-test handshakes at 200 nodes, and export burn tables to your operations console.
Programmatic swarm control. REST + gRPC endpoints let your scheduler nudge planes, request conjunctions, and audit every decision the swarm made.