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Motion planning and manipulation of multiple nanowires simultaneouly under electric-fields in fluid suspension.

, , and . CASE, page 489-494. IEEE, (2015)

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Motion control and manipulation of nanowires under electric-fields in fluid suspension., , and . AIM, page 366-371. IEEE, (2014)Ensemble Control for Manipulating Multiple Nanowires in Fluid Suspension Using External Electrical Fields., and . AIM, page 105-110. IEEE, (2023)Electrophoresis-Based Adaptive Tube Model Predictive Control of Micro- and Nanoparticles Motion in Fluid Suspension., and . AIM, page 2068-2073. IEEE, (2020)Optimal motion planning and control of a crack filling robot for civil infrastructure automation., , , and . CASE, page 1463-1468. IEEE, (2017)Time-optimal simultaneous motion planning and manipulation of multiple nanowires under electric-fields in fluid suspension., , and . CASE, page 954-959. IEEE, (2016)Electrophoresis-based motion planning and control of a nanowire in fluid suspension., , , and . CASE, page 819-824. IEEE, (2013)3D Pose Identification of Micro- and Nanowires in Fluid Suspensions., and . CASE, page 2092-2097. IEEE, (2021)Simultaneous Multiple-Nanowire Motion Control, Planning, and Manipulation Under Electric Fields in Fluid Suspension., , and . IEEE Trans Autom. Sci. Eng., 15 (1): 80-91 (2018)Motion Control, Planning and Manipulation of Nanowires Under Electric-Fields in Fluid Suspension., , and . IEEE Trans Autom. Sci. Eng., 12 (1): 37-49 (2015)Motion control of autonomous aggressive vehicle maneuvers., , , and . AIM, page 1663-1668. IEEE, (2016)