Reorienting the mounting cylinder to side panels frees earth-deck space for antennas and heat pipes while supporting stacked satellite launches.
Coordinated masking satellites and signal amplification reduce orbital and electromagnetic interference to restore clear overhead observations.
A hub-based control architecture lets payload owners keep direct control while ground and AI layers coordinate spacecraft operations and resolve conflicts.
Coordinated satellites mask interference and amplify signals to preserve clear ground-based optical and radio observations.
LIDAR sensing and deep reinforcement learning predict orbital collision risks and steer satellite panels to adjust trajectory autonomously.
Onboard orbit propagation corrects imaging time and payload attitude so satellites can point accurately at ground targets despite prediction errors.
A centralized hub lets multiple users operate assigned spacecraft payloads while reducing control conflicts, cost, and maintenance.
An SDRE-based regulator generates real-time spacecraft attitude trajectories that stay stable under nonlinearities and unmodeled disturbances.
A shared optical and laser sightline lets spacecraft stabilize pointing during imaging and data transfer, reducing blur and control complexity.
Automated orbital awareness and planning reduce manual workload while coordinating station keeping, collision response, and resource use across satellites.
Multiple satellite views are merged and amplified to mask orbital interference, reduce RF noise, and preserve clear overhead observation.
A posture correction angle compensates for ground orbit prediction drift, keeping satellite image capture aligned with the intended target.
Telemetry, space weather, and orbital data are combined to automate satellite maneuvers, collision response, and resource use across large constellations.
Centralized hub authorization lets multiple users operate shared spacecraft payloads without control conflicts or heavy ground-operations investment.
Natural orbital drift regions let a chaser spacecraft coast with thrusters off, cutting fuel use while maintaining safe rendezvous under failure.