Passive Non-Prehensile Manipulation on Helix Path Based on Mechanical Intelligence
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Passive Non-Prehensile Manipulation on Helix Path Based on Mechanical Intelligence

Authors: Abdullah Bajelan, Adel Akbarimajd

Abstract:

Object manipulation techniques in robotics can be categorized in two major groups including manipulation with grasp and manipulation without grasp. The original aim of this paper is to develop an object manipulation method where in addition to being grasp-less, the manipulation task is done in a passive approach. In this method, linear and angular positions of the object are changed and its manipulation path is controlled. The manipulation path is a helix track with constant radius and incline. The method presented in this paper proposes a system which has not the actuator and the active controller. So this system requires a passive mechanical intelligence to convey the object from the status of the source along the specified path to the goal state. This intelligent is created based on utilizing the geometry of the system components. A general set up for the components of the system is considered to satisfy the required conditions. Then after kinematical analysis, detailed dimensions and geometry of the mechanism is obtained. The kinematical results are verified by simulation in ADAMS.

Keywords: Mechanical intelligence, Object manipulation, Passive mechanism, Passive non-prehensile manipulation.

Digital Object Identifier (DOI): doi.org/10.5281/zenodo.1112141

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References:


[1] M. J. Behrens,“Robotic Manipulation by Pushing at a Single Point with Constant Velocity: Modeling and Techniques,” PhD thesis, University of Technology, Sydney, 2013.
[2] E. Yoshida, M. Poirier, J. P. Laumond, O. Kanoun, F. Lamiraux, R. Alami, and Y. Kazuhito,“Pivoting based Manipulation by a Humanoid Robot,” Autonomous Robots, vol. 28, no. 1, pp. 77–88, 2010.
[3] T. H. Vose, P. Umbanhowar, K. M. Lynch,“Sliding Manipulation of Rigid Bodies on a Controlled 6-DoF Plate,” The International Journal of Robotics Research, vol. 31, no. 7, pp. 819–838, 2012.
[4] A. Akbarimajd, M. Nili Ahmadabadi,“Manipulation by Juggling of Planar Polygonal objects Using Tow 3–DOF Manipulators,” IEEE/ASME conf, on Advenced Intelligent Mechatronics (AIM), (Zurich), sept 2007.
[5] A. Bicchi, K. T. Golberg,“Minimalism in robot manipulation,” Workshop. IEEE Conf. on Robotics and Automation, 1996.
[6] K. M. Lynch, C. K. Black,“Control of underactuated manipulation by real-time nonlinear optimization,” Int. Symposium Robotics Research, snowbird UT, 1999.
[7] S. Akella, W. H. Huang, K. M. Lynch, M. T. Mason,“Sensorless parts prienting with a one-joint Manipulator,” IEEE Conf. on Robotics and Automation, 1997.
[8] K. Lynch,“Toppling Manipulation,” IEEE Conf. on Robotics and Automation, Michigan, May 1999.
[9] S. Akella, W. H. Huang, K. M. Lynch, M. T. Mason,“Parts feeding on a conveyor with a one joint robot,” Journal of Algorithmica, vol. 26, no. 3, pp. 313–344, 2000.
[10] A. Akbarimajd, M. Niliahmadabadi,“Manipulation by juggling of planar polygonal objects using tow 3–DOF manipulators,” IEEE/ASME Conf. on Advenced Intelligent Mechatronics ( ATM ), Zurich, 2007, pp. 4–7.
[11] A. Akbarimajd, M. Niliahmadabadi, B. Beigzadeh,“Manipulators kinematic modeling and planning,” Robotics and Autonomous System, vol. 55, no. 6, pp. 444–459, 2007.
[12] M. Mason, D. Paik, D. Rus, L.R. Taylor,“A mobile manipulation,” IEEE Conf. on Robotics & Automation. Detroit. Michigan, May 1999.
[13] T. McGeer,“Passive Dynamic Walking,” International Journal of Robotics Research, vol. 7, no. 2, pp. 62 – 82, 1990.
[14] B. Beigzadeh, A. Megdari, S. Sohrabpour,“Passive dynamic object manipulation: preliminary definition and examples,” Acta Automatica Sinica, vol. 36, no. 12, pp. 1711–1719, 2007.