Abstract
The analytical design method of the intellectual multi agent control for the mechanism of parallel structure of type the manipulator-tripod is considered in this paper. Tripod is intended for maintenance of the spatial technological movements of the a gripper with a working tool. A tripod’s construction is simple, but if the tripod’s control is intellectual then the big variety of technological operations can be realized. The tripod’s control system includes three agents. The algorithms of these agents are designed here. Application of the multi agent system simplifies the algorithm of the tripod’s control, in particular, with using of the intellectual approach.
Access this chapter
Tax calculation will be finalised at checkout
Purchases are for personal use only
Similar content being viewed by others
References
Glazunov, V.A., Koliskor, A.Sh., Krayinev, A.F.: Spatial Mechanisms of Parallel Structure. Moscow, Nauka, 96 p. (1991) (in Russian)
Bushuev, V.V., Holshev, I.G.: Mechanism of parallel structure in mechanical engineering. STIN (1), 3–8 (2001)
Gregorio, R.D.: Kinematics of the 3-UPU wrist. Mech. Mach. Theory 38, 253–263 (2003)
Kong, X., Gosselin, C.: Type synthesis of 3-DOF translational parallel manipulators based on screw theory. J. Mech. Des. 126, 82–126 (2004)
Kong, X., Gosselin, C.: Type Synthesis of Parallel Mechanisms, 275 p. Springer (2007)
Gaiduk, A.R., Kapustyan, S.G., Shapovalov, I.O.: Self-organization in groups of intelligent robots. Adv. Intell. Syst. Comput. 345, 171–181 (2015)
Markovich, S.V., Tyves, L.I.: Optimal on speed control of the robot movement on own trajectory. Probl. Mech. Eng. Mach. Reliab. (5), 76–82 (1993) (in Russian)
Glazunov, V.A., Dugin, E.B., Kistanov, V.A., Vu Ngok Bik: Optimization of the mechanisms of parallel structure parameters on the basis of the simulation working range. Prob. Mach. Build. Mach. Reliab. (6), 12–16 (2005) (in Russian)
Gerasun, V.M., Nesmiyanov, I.A.: Control system for manipulators on the basis of spatial executive mechanisms. Mechatron. Autom. Control (2), 24–28 (2010) (in Russian)
Dyashkin-Titov, V.V., Pavlovsky, V.E.: Problem of optimal control of moving the gripper of manipulator-tripod. Izvestiya Nizhne-Volzhskogo Agro-University Complex 3(36), 231–236 (2014)
Gaiduk, A.R.: Theory of Automatic Control: Tutorial, p. 415. Moscow, Vysshaya shkola (2010). ISBN 978-5-06-006055-3 (in Russian)
Berthomieu, T., Reboulet, C.: Dynamic model of parallel manipulator with six degree of freedom. In: Proceedings of the International CAR, Pise, pp. 1153–1157, 19–22 June 1991
Volkomorov, S.V., Kaganov, J.T., Karpenko, A.P.: Simulation and optimization of some parallel mechanisms. In: Information Technologies, Vyp. 5, pp. 1–32 (2010) (in Russian)
Zhoga, V.V., Gerasun, V.M., Nesmiyanov, I.A., Vorobjeva, N.S., Dyashkin-Titov, V.V.: Dynamic synthesis of optimum program movements of the manipulator-tripod. Probl. Mach. Build. Mach. Reliab. (2), 85–92 (2015) (in Russian)
Skobelev, P.O.: Multi-agent systems for real time adaptive resource management, Chapter 12. In: Industrial Agents: Emerging Applications of Software Agents in Industry, 24 p. Elsevier (2015)
Krot, A.M., Prakapovich, R.A.: Nonlinear analysis of the Hopfield network dynamical states using matrix decomposition theory. Chaotic Model Simul 1, 133–146 (2013)
Gaiduk, A.R.: Continuous and Discrete Dynamic Systems. Moscow, Uchlitvuz (2004). ISBN-5-8367-0025-X (in Russian)
Gaiduk, A.R.: Mathematical Methods of the Analysis and Design of Dynamic Systems. Lap Lambert Academic Publishing, Saarbrücken, Deutschland (2015) (in Russian)
Kaliaev, I.A., Gaiduk, A.R.: Gregarious principles of control in group of objects. Mechatron. Autom. Control (12), 29–33 (2004) (in Russian)
Acknowledgements
This work is supported by RFBR, project number 16-58-00226.
Author information
Authors and Affiliations
Corresponding author
Editor information
Editors and Affiliations
Rights and permissions
Copyright information
© 2019 Springer International Publishing AG, part of Springer Nature
About this paper
Cite this paper
Gaiduk, A., Kapustyan, S., Dyachenko, A., Prakapovich, R., Podmazov, I. (2019). Intellectual Multi Agent Control of Tripod. In: Kim, JH., et al. Robot Intelligence Technology and Applications 5. RiTA 2017. Advances in Intelligent Systems and Computing, vol 751. Springer, Cham. https://doi.org/10.1007/978-3-319-78452-6_31
Download citation
DOI: https://doi.org/10.1007/978-3-319-78452-6_31
Published:
Publisher Name: Springer, Cham
Print ISBN: 978-3-319-78451-9
Online ISBN: 978-3-319-78452-6
eBook Packages: Intelligent Technologies and RoboticsIntelligent Technologies and Robotics (R0)