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Original Articles

Mechatronic design, experimental setup, and control architecture design of a novel 4 DoF parallel manipulator

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Pages 425-439 | Received 08 Mar 2017, Accepted 11 Jul 2017, Published online: 24 Aug 2017

References

  • Araujo-Gómez, P., Díaz-Rodriguez, M., Mata, V., Valera, A., Page, A. (2016). Design of a 3-UPS-RPU parallel robot for knee diagnosis and rehabilitation. In: ROMANSY 21-Robot Design, Dynamics and Control. Switzerland: Springer International Publishing, 303–310.
  • Bruyninckx, H., Soetens, P., Issaris, P., Leuven, K. (2002). The Orocos Project. http://www.orocos.org.
  • Cao, R., Gao, F., Zhang, Y., Pan, D., Chen, W. (2015). A new parameter design method of a 6 DoF parallel motion simulator for a given workspace. Mechanics Based Design of Structures and Machines 43(1):118. doi:10.1080/15397734.2014.904234. Accessed date: August 2nd, 2017.
  • Carretero, J., Nahon, M., Podhorodeski, R. (2000). Workspace analysis and optimization of a novel 3 DoF parallel mechanism. International Journal of Robotics and Automation 15(4):1021–1026. doi:10.1115/1.533542
  • Cazalilla, J., Vallés, M., Valera, A., Mata, V., Díaz-Rodriguez, M. (2016). Hybrid force/position control for a 3 DoF 1T2R parallel robot: Implementation, simulations and experiments. Mechanics Based Design of Structures and Machines 44(1):16. doi:10.1080/15397734.2015.1030679
  • Chablat, D., Wenger, P. (2003). Architecture optimization of a 3 DoF translational parallel mechanism for machining applications, the orthoglide. IEEE Transactions on Robotics and Automation 19(3):403–410. doi:10.1109/tra.2003.810242
  • Clavel, R. (1988). A Fast Robot with Parallel Geometry. Proc. Int. Symposium on Industrial Robots, Lausanne, Switzerland, 91–100.
  • Díaz, I., Gil, J. J., Sánchez, E. (2011). Lower-limb robotic rehabilitation: Literature review and challenges. Journal of Robotics 2011:1–11. doi:10.1155/2011/759764
  • Díaz-Rodríguez, M., Mata, V., Valera, Á., Page, Á. (2010). A methodology for dynamic parameters identification of 3-DOF parallel robots in terms of relevant parameters. Mechanism and Machine Theory 45(9):1337–1356. doi:10.1016/j.mechmachtheory.2010.04.007
  • Escamilla, R. F., MacLeod, T. D., Wilk, K. E., Paulos, L., Andrews, J. R. (2012). Cruciate ligament loading during common knee rehabilitation exercises. Proceedings of the Institution of Mechanical Engineers, Part H: Journal of Engineering in Medicine 226(9):670–680. doi:10.1177/0954411912451839
  • Gan, D., Dai, J. S., Dias, J., Umer, R., Seneviratne, L. (2015). Singularity-free workspace aimed optimal design of a 2T2R parallel mechanism for automated fiber placement. Journal of Mechanisms and Robotics 7(4):041022. doi:10.1115/1.4029957
  • Garage, W. (2009). Robot Operating System. www.ros.org. Accessed date: August 2nd, 2017.
  • Girone, M., Burdea, G., Bouzit, M., Popescu, V., Deutsch, J. E. (2001). A Stewart platform-based system for ankle telerehabilitation. Autonomous Robots 10(2):203–212.
  • Gough, V., Whitehall, S. (1962). Universal Tyre Test Machine. Proceedings 9th Int. Technical Congress FISITA, London, vol. 117, 117–135.
  • Jamwal, P. K., Hussain, S., Xie, S. Q. (2015). Review on design and control aspects of ankle rehabilitation robots. Disability and Rehabilitation: Assistive Technology 10(2):93–101. doi:10.3109/17483107.2013.866986
  • Lee, K. M., Arjunan, S. (1992). A three degrees of freedom micro-motion in-parallel actuated manipulator. In: Tzou, H. S., Fukuda, T., eds. Precision Sensors, Actuators and Systems. Dordrecht (Netherlands): Springer Science+Business Media B.V., 345–374.
  • Li, Y., Xu, Q. (2007). Design and development of a medical parallel robot for cardiopulmonary resuscitation. IEEE/ASME Transactions on Mechatronics 12(3):265–273. doi:10.1109/tmech.2007.897257
  • Merlet, J. P. (2006). Parallel Robots. Dordrecht (Netherlands): Springer Science & Business Media, B.V., 128.
  • Mohan, S., Mohanta, J. K., Kurtenbach, S., Paris, J., Corves, B., Huesing, M. (2017). Design, development and control of a 2PRP-2PPR planar parallel manipulator for lower limb rehabilitation therapies. Mechanism and Machine Theory 112:272–294.
  • Ortega, R., Perez, J. A. L., Nicklasson, P. J., Sira-Ramirez, H. (2013). Passivity-Based Control of Euler-Lagrange Systems: Mechanical, Electrical and Electromechanical Applications. Springer Science & Business Media.
  • Ortega, R., Spong, M. W. (1989). Adaptive motion control of rigid robots: A tutorial. Automatica 25(6):877–888. doi:10.1016/0005-1098(89)90054-x
  • Paul, R. P. (1981). Robot Manipulators: Mathematics, Programming, and Control: The Computer Control of Robot Manipulators. Cambridge, MA: MIT Press.
  • Pierrot, F., Company, O. (1999). H4: A New Family of 4 DoF Parallel Robots. Proceedings of 1999 IEEE/ASME International Conference on Advanced Intelligent Mechatronics, Georgia, USA, 508–513.
  • Ramsay, J. O., Silverman, B. W. (1997). Functional Data Analysis. Springer Series in Statistics. New York, NY: Springer.
  • Rastegarpanah, A., Saadat, M., Borboni, A. (2016). Parallel robot for lower limb rehabilitation exercises. Applied Bionics and Biomechanics 2016:1–10. doi:10.1155/2016/8584735
  • Stewart, D. (1965). A platform with six degrees of freedom. Proceedings of the Institution of Mechanical Engineers 180(1):371–386.
  • Tsai, L. W. (1999). Robot Analysis: The Mechanics of Serial and Parallel Manipulators. New York, USA: John Wiley & Sons, INC.
  • Vallés, M., Cazalilla, J., Valera, A., Mata, V., Page, A., Díaz-Rodríguez, M. (2015). A 3PRS parallel manipulator for ankle rehabilitation: Towards a low-cost robotic rehabilitation. Robotica:1–19. doi:10.1017/s0263574715000120.
  • Vallés, M., Díaz-Rodríguez, M., Valera, A., Mata, V., Page, A. (2012). Mechatronic development and dynamic control of a 3 DoF parallel manipulator. Mechanics Based Design of Structures and Machines 40(4):434–452. doi:10.1080/15397734.2012.687292
  • Xu, W. L., Pap, J. S., Bronlund, J. (2008). Design of a biologically inspired parallel robot for foods chewing, IEEE Transactions on Industrial Electronics 55(2):832–841. doi:10.1109/tie.2007.909067
  • Yoon, J., Ryu, J., Lim, K. B. (2006). Reconfigurable ankle rehabilitation robot for various exercises. Journal of Robotic Systems 22(S1):S15–S33. doi:10.1002/rob.20150
  • Zarkandi, S. (2011). Kinematics and singularity analysis of a parallel manipulator with three rotational and one translational DOFs. Mechanics Based Design of Structures and Machines 39(3):392–407. doi:10.1080/15397734.2011.559149

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