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Research Article

A virtual power algorithm for dynamics analysis of a 3-RRcP spherical parallel robot using the screw theory

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Pages 351-363 | Received 02 Mar 2017, Accepted 10 Sep 2018, Published online: 15 Oct 2018
 

ABSTRACT

Due to their closed-loop structure and kinematic constraints, dynamic modelling of parallel manipulators presents an inherent complexity. In the present research, an approach to obtain the nonlinear dynamics equations of motion of a 3-RRcP spherical parallel manipulator is presented. The proposed approach is based on the principle of virtual power and the screw theory. To obtain the dynamics equations of motion, we propose an influence matrix which relates the passive joint rates to the actuated joint rates for each branch. The presented method allows a straightforward computation of torques of the actuated joints in terms of the resultant external forces and the desired trajectory. In order to represent correctness and accuracy of the obtained equations of motion, two case studies are considered that their solutions are compared by a commercial dynamics software package (CDSP).

Disclosure statement

No potential conflict of interest was reported by the authors.

Additional information

Notes on contributors

Javad Enferadi

Javad Enferadi was born in Mashhad,, Iran, in 1975. He received the B.E. degree in Mechanical engineering from the Ferdowsi University of Mashhad, Mashhad, Iran, in 1999. He received the master degree in Mechanical engineering from the Mazandaran University, Mazandaran, Iran, in 2002, and the Ph.D. degrees in Mechanical engineering from the Ferdowsi University of Mashhad, Mashhad, Iran, in 2010. Now, he is an Assistant Professor in the Department of Mechanical Engineering, Mashhad Branch, Islamic Azad University, Mashhad, Iran. His current research interests include kinematics, dynamics, optimization and control of the parallel robots.

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