Largest contribution of SLAB to AAS/AIAA conference
We are preparing for the largest contribution of the Stanford University Space Rendezvous Laboratory to the AAS/AIAA Astrodynamics Specialist Conference which will be held in Boston this Summer.
We have just submitted 6 extended abstracts spanning the most recent research of the lab on several topics — from spacecraft 3D model abstraction to collision avoidance, from optimal control and station keeping in cislunar orbits to digital/robotic twinning for space rendezvous, all the way to presenting the first PNT system for spacecraft solely based on vision.
Enjoy the authors, titles below and the extended abstracts. Way to go SLAB!
Francesch Huc, P., Bates, E., D'Amico, S.;
Fast Learning of Non-Cooperative Spacecraft 3D Models Through Primitive Initialization;
Murray-Cooper, M., D'Amico, S.;
Fast Onboard Conjunction Assessment and Escape for Distributed Space Systems;
Hunter, M., Manuel, W., D'Amico, S.;
Optimal Impulsive Control of Cislunar Relative Motion Using Reachable Set Theory;
Golan, A., Zin, G., Ahmed, Z., Bates, E., Francesch Huc, P., Low, S., Bosse, J., D'Amico, S.;
Digital and Robotic Twinning for Validation of Rendezvous, Proximity Operations, and Formation Flying;
Foss, E., Takubo Y., D'Amico, S.;
Long-Duration Station-Keeping Strategy for Cislunar Spacecraft Formations;
Rizza, A., Kruger, J., D'Amico, S.;
Fast Autonomous Lost-in-Space Catalog-Based Optical Navigation (FALCON);