On-Orbit Servicing • Robotics • Mission Control

Satellite Repair Command

Command center for planning service missions: inspections, refueling, repair, and modernization of satellites. The platform provides orbital models, robotic simulators, maneuver planners, risk matrices, and contract templates for commercial and government operators.

Key modules

Maneuver scheduler

Δv optimization, time budget, approach windows, and collision avoidance.

Robotic trainers

Simulations of manipulators, orbital tugs, wire and wireless capture.

Mission lifecycle

From inspection to modernization: checklists, documentation, quality control.

Compliance and insurance

Licence templates, insurance policies, debris-risk assessment, and ITU compliance.

Data and simulation layers

Programs and tracks

Inspection & Diagnostics

  • Visual inspections
  • NDE sensors
  • Anomaly analytics

Refuel & Upgrade

  • Capture
  • Fuel modules
  • Component replacement

Deorbit & Disposal

  • Deorbit
  • Disposal trajectories
  • Regulatory reports

Operational steps

  1. Calculate approach maneuvers and compare with the customer's schedule.
  2. Select a servicing spacecraft and configuration of robotic tools.
  3. Form a package of documents: insurance policy, licenses, safety plan.
  4. Conduct a training session and finalize the crew changeover plan.

Partner ecosystem

Implementation scenarios

Refueling of geostationary satellite

Modeling capture, fuel transfers, electrical system test, SLA.

Modernization of cameras on LEO

Replace optics, inspect panels, update software and telemetry.

Deorbiting to a disposal orbit

Trajectory deflection calculation, interaction with insurers, regulatory report.

Roadmap

  1. Assess — satellite analysis, risks, contracts.
  2. Design — service vehicle configuration, operational scenarios.
  3. Execute — mission execution, monitoring, communication.
  4. Closeout — reporting, payment, lessons learned, contract continuation.

Success metrics

FAQ

Which orbits does the platform support?

GEO, MEO, LEO, HEO, as well as special orbits like Tundra and Molniya.

Can fuel transfers be modeled?

Yes, models for gas, chemical, and electrical systems with mass control are available.

How are debris risks accounted for?

Risk engine uses conjunction data, debris models, and generates avoidance plans.

Are ground control systems integrated?

There is an API for SCOS-2000, GMSEC, custom MCC, with operator change planning.

What are the trainers?

VR/AR environment for manipulator operations, docking, free-flyer scenarios, and emergency drills.

Is insurance supported?

The platform forms a package of documents for insurers, including risk assessment and scenarios.

Can cameras and sensors be integrated?

Yes, CAD/STEP models, visibility maps, telemetry profiles are supported.

Is there a possibility for multi-use services?

Roadmap allows planning series of missions, SLA, repeat visits, and modernization.

How are reports generated?

Creates an Executive Summary, technical report, financial report, and regulatory forms.

Is team training supported?

There are training courses, certification programs, and simulations for flight controllers.

Launch a service mission from analysis to completion with full document support.

Plan service