Intelligence that
extends the future
beyond Earth.
Neodustria unifies physics, AI, spacecraft data, satellite telemetry, launch systems, mission operations, and orbital intelligence to design, validate, operate, and optimize aerospace systems at scale.
Operational Pressure Zones
Critical challenges impacting mission success, reliability, and operational performance across the aerospace value chain.
Mission Assurance
Space missions face extreme reliability pressure where launch, orbital, thermal, propulsion, and communication failures can compromise entire programs.
Spacecraft Availability
Satellite degradation, subsystem failures, orbital constraints, and limited intervention options reduce operational continuity and mission lifetime.
Engineering Complexity
Structures, propulsion, avionics, thermal control, payload systems, and orbital dynamics require predictive intelligence across highly coupled physics domains.
Launch & Lifecycle Cost
Launch windows, payload integration, fuel optimization, ground operations, and long development cycles intensify cost and schedule pressure.
Safety & Compliance
Mission safety, space debris mitigation, cybersecurity, export controls, traceability, and certification require auditable intelligence across the full space system lifecycle.
The Neodustria Intelligence Layer
Physics-aware AI unifying data, models, and operational intelligence across the full aerospace engineering and mission lifecycle.
Aerospace Workflows
End-to-end orchestration across aerospace engineering and operations — from spacecraft design to virtual validation, mission assurance, orbital optimization, and satellite operations.
Explore design alternatives across structures, propulsion, thermal management, avionics, payload integration, orbital constraints, and lifecycle cost.
Validate thermal behaviour, structural loads, propulsion performance, orbital dynamics, radiation exposure, and safety-critical mission scenarios before deployment.
Optimise launch profiles, propulsion usage, station-keeping, payload operations, mission scheduling, and asset availability across orbital constraints.
Convert predictive insights into execution-ready launch plans, mission procedures, ground-segment workflows, contingency plans, and subsystem readiness.
Monitor spacecraft, detect anomalies, forecast failures, and continuously improve reliability, safety, efficiency, mission lifetime, and operational performance.
High-Impact Use Cases
Real-world applications driving measurable outcomes across aerospace engineering, mission assurance, and satellite operations.
Predictive Spacecraft Maintenance
Reduce subsystem failures and lifecycle cost
Mission Risk Forecasting
Anticipate anomalies before they affect missions
Propulsion & Orbit Efficiency
Optimise thrust profiles, station-keeping, and orbital maneuvers
Spacecraft Fault Detection
Detect propulsion, avionics, thermal, payload, and communication faults early
Measurable Impact Across the Aerospace Value Chain
Proven in Aerospace.
Built for Europe.
Empowering European satellite operators, launcher companies, spacecraft manufacturers, mission teams, and aerospace engineering organizations to improve reliability, safety, efficiency, and sovereignty across the next generation of space systems.
Partner with Neodustria to build safer,
smarter, and more resilient space systems.
Join aerospace engineering, satellite, launcher, spacecraft, and mission operations teams using physics-aware AI, digital twins, predictive intelligence, and sovereign industrial intelligence to improve space system performance.