Characterization and Study of the Primitive Dynamic Movements Required to Bi-Manipulate a Box

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ID: 272464
2021
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Abstract
Automating the action of finding the opening side of a box is not possible if the robot is not capable of reaching and evaluating all of its sides. To achieve this goal, in this paper, three different movement strategies to bi-manipulate a box are studied: overturning, lifting, and spinning it over a surface. First of all, the dynamics involved in each of the three movement strategies are studied using physics equations. Then, a set of experiments are conducted to determine if the real response of the humanoid robot, TEO, to a box is consistent with the expected answer based on theoretical calculus. After the dynamics validation, the information on the forces and the position in the end effectors is used to characterize these movements and create its primitives. These primitive movements will be used in the future to design a hybrid position–force control in order to adapt the movements to different kinds of boxes. The structure of this control is also presented in this paper.
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hernandez-vicen2021electronicscharacterization Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors Juan Hernandez-Vicen;Santiago Martinez;Raul de Santos-Rico;Elisabeth Menendez;Carlos Balaguer;Hernandez-Vicen, Juan;Martinez, Santiago;de Santos-Rico, Raul;Menendez, Elisabeth;Balaguer, Carlos;
Journal Electronics
Year 2021
DOI
10.3390/electronics10111354
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