Trajectory Analysis and Dynamic Simulation of a 6 DOF Industrial Manipulator

Abubakar Umar, Zhanqun Shi Wei Wang, Zulfiqar Ibahim Bibi Farouk

Abstract


The popularization of the articulate industrial manipulator in most industrial work spaces is majorly as a result of its dexterity, robustness, and its ability to reach difficult configurations during an industrial task. This has inspired the research into the design and analysis of an articulate industrial manipulator to improve its accuracy and agility. The manipulator was modelled, then its kinematic and dynamic properties were established in Siemen’s Unigraphics software. An algorithm that generates and analyses the trajectory is presented, the trajectory was first parametrically defined, then dynamics of the manipulator was evaluated using Newton-Euler formulations to derive a state-space dynamic model which is a function of only the joints position (i.e. the only input required is the joints position) which can be easily updated as it moves along the desired path, the results were compared with results obtained from ADAMS and was seen to be more efficient. The algorithm was then implemented on the proposed manipulator and simulated in MATLAB by first setting it to force-free conditions, then it was loaded with 5kg and 10kg exerting a maximum torque of 5N and 10N respectively at the end-effector and simulated again. The algorithm was found to be computationally efficient and practical, furthermore, the algorithm would help students and researchers alike to analyze the trajectories and dynamics for manipulators more efficiently thereby enabling them to implement more stable control strategies for the industrial manipulators.


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References


Q.-H. Max Meng, “Comparison study of model-based and non-model-based robot controllers,” 1995 IEEE Int. Conf. Syst. Man Cybern. Intell. Syst. 21st Century, vol. 1, pp. 61–66, 1995.

S. Jiang et al., “A typical dynamic parameter identification method of 6-degree-of-freedom industrial robot,” Proc. Inst. Mech. Eng. Part I J. Syst. Control Eng., vol. 231, no. 9, pp. 740–752, 2017.

S K Saha, ‘Introduction to Robotics’, ISBN: 0-07-066900-7, McGraw-Hill Publishing Company Limited, 2008.

Lung-Wen Tsai, ‘Robot Analysis’, ISBN-10: 0471325937, ISBN-13: 978-0471325932, Wiley-Interscience Publisher, 1999.

Mark W Spong, M. Vidyasagar, “Robot Dynamics And Control”, ISBN: 8126517808, 9788126517800, Wiley India Pvt. Limited, 2008.

John J. Craig, “Introduction to Robotics”, ISBN: 0-13-123629-6, Pearson Education, Inc. 2005

B. Fardenesh and J. Rastega, “A New Model-Based Tracking Control foe Robot Manipulators Using Trajectory Pattern Inverse Dynamics”, Short Papers - IEEE Trans. Robot. Automat. vol. 8, no. 2, pp. 279–285, 1992.

H. Davis and W. Book, “Torque control of a redundantly actuated passive manipulator,” in American Control Conference, Proceedings of the 1997, vol. 2, pp. 959–963, 1997.

H. Cheng, Y.-K. Yiu, and Z. Li, “Dynamics and control of redundantly actuated parallel manipulators,” IEEE/ASME Transactions on mechatronics, vol. 8, no. 4, pp. 483–491, 2003.

C. Yang, G. Ganesh, S. Haddadin, S. Parusel, A. Albu-Schaeffer, and E. Burdet, “Human-like adaptation of force and impedance in stable and unstable interactions,” IEEE transactions on robotics, vol. 27, no. 5, pp. 918–930, 2011.

Pradeep K. Khosla and Takeo Ksnade, “Parameter Identification of Robot Dynamics” Proceedings of the IEEE Conference on Decision and Control, p 1754-1760, 1985

Z.-H. Jiang and H. Senda, “Dynamic parameter identification of robot arms with servo-controlled electrical motors,” vol. 6042, p. 604235, 2005

W. Wu, S. Zhu, X. Wang, and H. Liu, “Closed-loop dynamic parameter identification of robot manipulators using modified fourier series,” Int. J. Adv. Robot. Syst., vol. 9, 2012

M. Gautier and S. Briot, “Dynamic parameter identification of a 6 DOF industrial robot using power model,” 2013 IEEE Int. Conf. Robot. Autom., pp. 2914–2920, 2013

C. Yang, Y. Jiang, W. He, J. Na, Z. Li, and B. Xu, “Adaptive Parameter Estimation and Control Design for Robot Manipulators with Finite-Time Convergence,” IEEE Trans. Ind. Electron., vol. 0046, no. c, 2018

C. Liu, "Kinematical and Dynamic Analysis of 6-DOF Industrial Robot," 2016 9th International Symposium on Computational Intelligence and Design (ISCID), Hangzhou, pp. 32-35, 2016.

D. I. Park, C. Park, H. Do, T. Choi and J. Kyung, "Design and analysis of dual arm robot using dynamic simulation," 2013 10th International Conference on Ubiquitous Robots and Ambient Intelligence (URAI), Jeju, pp. 681-682, 2013.

V. D. Tourassis, “Principles and design of model-based robot controllers,” Int. J. Control, vol. 47, no. 5, pp. 1267–1275, 1988

J. Y. S. Luh, M. W. Walker. and R. P. Paul, ”On-line computational scheme for mechanical manipulators,” Journal of Dynamic Systems, measurement and Control, vol. 102, no. 2, pp. 69-76, June 1980

John J Murray, Charles P Neuman, “Organizing Customized Robot Dynamics Algorithms for Efficient Numerical Evaluation,” IEEE Transactions on Systems, Man, and Cybernetics, vol. 18, no. 1, 1988. P115 – 126


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