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Multiple-spacecraft reconfigurations through collision avoidance, bouncing, and stalemates.

, , and . ACC, page 1764-1769. IEEE, (2003)

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Phase synchronization control of complex networks of Lagrangian systems on adaptive digraphs., , , and . Autom., 49 (5): 1148-1161 (2013)Optimal experiment design for identification of large space structures., , and . Autom., 24 (3): 357-364 (1988)On Development of 100-Gram-Class Spacecraft for Swarm Applications., , and . IEEE Syst. J., 10 (2): 673-684 (2016)A probabilistic eulerian approach for motion planning of a large-scale swarm of robots., , and . IROS, page 3822-3829. IEEE, (2016)Mode and logic-based switching for the formation flying control of multiple spacecraft., and . ACC, page 710-715. IEEE, (2001)Energy optimal reconfiguration for large scale formation flying., , , and . ACC, page 2986-2991. IEEE, (2004)Probabilistic guidance of distributed systems using sequential convex programming., , , , and . IROS, page 3850-3857. IEEE, (2014)A formulation of stability for spacecraft formations., , , and . ACC, page 1-7. IEEE, (2006)Control topologies for deep space formation flying spacecraft., and . ACC, page 2836-2841. IEEE, (2002)Rigid body equations of motion for modeling and control of spacecraft formations. Part 1: Absolute equations of motion., , and . ACC, page 3646-3653. IEEE, (2004)