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Regrasp Planner Using Look-up Table

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  • Published : 2000.04.01

Abstract

A pick-and-place operation in 3-dimensional environment is basic operation for human and multi-purpose manipulators. However, there may be a difficult problem for such manipulators. Especially, if the object cannot be moved with a single grasp, regrasping, which can be a time-consuming process, should be carried out. Regrasping, given initial and final pose of the target object, is a construction of sequential transition of object poses that are compatible with two poses in the point of grasp configuration. This paper presents a novel approach for solving regrasp problem. The approach consists of a preprocessing and a planning stage. Preprocessing, which is done only once for a given robot, generates a look-up table which has information of kinematically feasible task space of end-effector through all the workspace. Then, using the table planning automatically determines possible intermediate location, pose and regrasp sequence leading from the pick-up to put-down grasp. Experiments show that the presented is complete in the total workspace. The regrasp planner was combined with existing path.

Keywords

References

  1. Tournassoud, P., Lozano-Perez, T., and Mazer, E., 1987, 'Regrasping', Proc. of IEEE Int. Conf on Robotics and Automation, pp.1924-1928
  2. Martin, B. and Thomas, S., 1997, 'Transition from Enveloping to Fingertip Grasp: A Way of Reorientation by a Multi-fingered Hand,' Proc. of IEEE Int. Conf. on Robotics and Automation, pp.1004-1009 https://doi.org/10.1109/ROBOT.1997.614266
  3. Erkmen, A. M. and Durna, M., 1998, 'Genetic Algorithm-Based Optimal Regrasping with the Anthrobot 5-fingered Robot Hand,' Proc. of IEEE Int. Conf. on Robotics and Automation, pp. 3329-3334 https://doi.org/10.1109/ROBOT.1998.680952
  4. Rohrdanz, F. and Wahl, F. M., 1997, 'Generating and Evaluation Regrasp Operations,' Proc. of IEEE Int. Conf. on Robotics and Automation, pp. 2013-2018 https://doi.org/10.1109/ROBOT.1997.619165
  5. Sascha, A. S., Stephan V., Nikolaos P. P. and Heiko M., 1999, 'Planning of Regrasp Operations,' Proc. of IEEE Int. Conf. on Robotics and Automation, pp. 245-250 https://doi.org/10.1109/ROBOT.1999.769979
  6. Latombe, J. C., 1991, Robot Motion Planning. Boston, Kluwer Academic
  7. Alami, R., Siemeon, T., and Laumond, J. P., 1990, A Geometrical Approach to Planning Manipulation Tasks: The case of Discrete Placements and Grasps, in Robotics Research 5, edited by Miura H. and Arimoto, S., The MIT Press, Cambridge, pp.453-463
  8. Koga, Y. and Latombe, J. C., 1994, 'On Multi-Arm Manipulation Planning,' Proc. IEEE Int. Conf. Robotics and Automation, pp. 945-952 https://doi.org/10.1109/ROBOT.1994.351231
  9. Ahuactzin, J. M., Gupta, K. and Mazer, E., 1998, 'Manipulation Planning for Redundant Robots: A Practical Approach,' Int. Journal of Robotics Research, Vol. 17, No. 7, pp. 731-747 https://doi.org/10.1177/027836499801700704
  10. O'Rourke, J., Computational Geometry in C, New York: Cambridge University Press, pp. 233-269
  11. Gilbert, E. G., Johnson, D. W. and Keerthi, S. S., 1998, 'A Fast Procedure for Computing the Distance Between Complex Objects in Three-Dimensional Space,' IEEE Journal of Robotics and Automation, Vol. 4, No. 2, pp. 193-203 https://doi.org/10.1109/56.2083
  12. Chen, P. C. and Hwang, Y. K., 1998, ' SANDROS: A dynamic Graph Search Algorithm for Motion Planning,' IEEE Trans. on Robotics and Automation, Vol. 14, No. 3, pp. 404-416 https://doi.org/10.1109/70.678449
  13. Whitney, D. E., 1972, 'The Mathematics of Coordinated Control of Prostheses and Manipulators,' Journal of Dyn. Sys., Meas., Contr, Vol. 4, No. 94, pp. 303-309