Valar provides a cloud-native flight dynamics platform that automates orbit determination, maneuver planning, and collision avoidance for satellites of any size and propulsion type. The system continuously ingests tracking data, computes precise orbits, generates optimal maneuvers, and delivers CCSDS‑compliant results via an API, reducing the need for specialist staff and speeding up mission setup.
Funding
Funding not disclosed
Founders
Product
Problem
Spacecraft operators must manually perform orbit determination, maneuver planning, and collision avoidance using fragmented tools and expert staff, which increases operational cost and limits scalability for emerging space businesses.
Solution
Valar delivers a cloud-native, operator‑less flight dynamics platform that automates the full navigation workflow for satellites in any orbit and with any propulsion type. The system continuously processes tracking data to compute precise orbits, generates optimal maneuver sequences, and evaluates conjunction risks without human intervention. Results are exposed through a CCSDS‑compliant API, enabling seamless integration with existing mission‑control software and third‑party services. By centralizing navigation, attitude control, and space‑traffic coordination in a single web interface, Valar reduces the need for specialized personnel and accelerates mission setup from weeks to days.
Target Audience
Primary customers are satellite operators and mission‑control teams at NewSpace startups and established aerospace enterprises that need efficient, low‑maintenance navigation solutions.
Features
- Automated orbit determination using cloud processing of telemetry and tracking inputs
- Optimized maneuver planning with delta‑V and mass budgeting, supporting station‑keeping and orbit transfers
- Continuous conjunction analysis and collision avoidance alerts compliant with CCSDS data standards
- Fully API‑driven integration allowing plug‑and‑play connectivity to legacy ground‑segment tools
- Scalable architecture that supports fleets ranging from LEO constellations to GEO platforms
- Support for all propulsion technologies and attitude control requirements