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Monolithic Six-DOF Parallel Positioning System for High-precision and Large-range Applications.

, , and . CoRR, (2023)

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Grasping designed for robotic assembly., and . ICARCV, page 441-446. IEEE, (2002)Unified modelling framework for UAVs using Bond Graphs., , , and . ISDA, page 21-27. IEEE, (2012)Feasibility assessment of vision-based surface roughness parameters acquisition for different types of machined specimens., and . Image Vis. Comput., 27 (4): 444-458 (2009)Certified workspace analysis of 3RRR planar parallel flexure mechanism., , , and . ICRA, page 3838-3843. IEEE, (2008)Generating Products for Robotic Assembly., and . ICRA, page 3565-3570. IEEE, (2004)Study of the hinge thickness deviation for a 316L parallelogram flexure mechanism fabricated via selective laser melting., , , , , and . J. Intell. Manuf., 32 (5): 1411-1420 (2021)Adaptive Control Strategy for Micro/Nano Manipulation Systems., , , and . IAS, page 375-382. IOS Press, (2006)Design, analysis, and experimental investigations of a 2-DOF monolithic parallel mechanism., , , , and . AIM, page 1324-1329. IEEE, (2013)Inverse kinematics Analysis of 6-RRCRR parallel manipulators., , and . AIM, page 644-648. IEEE, (2013)Dynamic Assembly Sequence Selection using Reinforcement Learning., and . ICRA, page 2633-2638. IEEE, (2004)