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Erschienen in: Neural Computing and Applications 12/2017

24.03.2016 | Original Article

Discrete-time sliding mode neuro-adaptive controller for SCARA robot arm

verfasst von: F. G. Rossomando, C. M. Soria

Erschienen in: Neural Computing and Applications | Ausgabe 12/2017

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Abstract

This work presents a discrete-time sliding mode neuro-adaptive control (DTSMNAC) method for robot manipulators. Due to the dynamics variations and uncertainties in the robot model, the trajectory tracking of robot manipulators has been one of the research areas for the last years. The proposed control structure is a practical design that combines a discrete-time neuro-adaptation technique with sliding mode control to compensate the dynamics variations in the robot. Using an online adaptation technique, a DTSMNAC controller is used to approximate the equivalent control in the neighborhood of the sliding surface. A sliding control is included to guarantee that the discrete-time neural sliding mode control can improve a stable closed-loop system for the trajectory tracking control of the robot with dynamics variations. The proposed technique simultaneously ensures the stability of the adaptation of the neural networks and can be obtained a suitable equivalent control when the parameters of the robot dynamics are unknown in advance. This neural adaptive system is applied to a SCARA robot manipulator and shows to be able to ensure that the output tracking error will converge to zero. Finally, experiments on a SCARA robot have been developed to show the performance of the proposed technique, including the comparison with a PID controller.

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Literatur
1.
2.
Zurück zum Zitat Lewis F, Abdallah C, Dawson D (1993) Control of robot manipulators. MacMillan Publishing Co., New York Lewis F, Abdallah C, Dawson D (1993) Control of robot manipulators. MacMillan Publishing Co., New York
3.
Zurück zum Zitat Samson C, Le Borgne M, Espinau B (1991) Robot control. Oxford University Press, Oxford Samson C, Le Borgne M, Espinau B (1991) Robot control. Oxford University Press, Oxford
4.
Zurück zum Zitat Spong M (1996) Motion control of robot manipulator. In: Levine W (ed) Handbook control. CRC Press, pp 1339–1350 Spong M (1996) Motion control of robot manipulator. In: Levine W (ed) Handbook control. CRC Press, pp 1339–1350
5.
Zurück zum Zitat Khalil W, Dombre E (2002) Modeling identification and control of robots. Hermes Penton Science, LondonMATH Khalil W, Dombre E (2002) Modeling identification and control of robots. Hermes Penton Science, LondonMATH
6.
Zurück zum Zitat Jiang Z-H, Ishida T (2007) Trajectory tracking control of industrial robot manipulators using a neural network controller. In: IEEE international conference on systems, man and cybernetics, 2007. ISIC, pp 2390–2395 Jiang Z-H, Ishida T (2007) Trajectory tracking control of industrial robot manipulators using a neural network controller. In: IEEE international conference on systems, man and cybernetics, 2007. ISIC, pp 2390–2395
7.
Zurück zum Zitat Khalal O, Mellit A, Rahim M, Salhi H, Guessoum A (2007) Robust control of manipulator robot by using the variable structure control with sliding mode. In: Mediterranean conference on control & automation, 2007. MED ‘07, pp 1–6 Khalal O, Mellit A, Rahim M, Salhi H, Guessoum A (2007) Robust control of manipulator robot by using the variable structure control with sliding mode. In: Mediterranean conference on control & automation, 2007. MED ‘07, pp 1–6
8.
Zurück zum Zitat Raafat SM, Said WK, Akmeliawati R, Tariq NM (2009) Improving trajectory tracking of a three-axis SCARA robot using neural networks. In: IEEE symposium on industrial electronics & applications, 2009. ISIEA 2009, pp 283–288 Raafat SM, Said WK, Akmeliawati R, Tariq NM (2009) Improving trajectory tracking of a three-axis SCARA robot using neural networks. In: IEEE symposium on industrial electronics & applications, 2009. ISIEA 2009, pp 283–288
9.
Zurück zum Zitat Benjanarasuth T, Sowannee N, Naksuk N (2010) Two-degree-of-freedom simple servo adaptive control for SCARA robot. In: 2010 international conference on control automation and systems (ICCAS), p 480–484 Benjanarasuth T, Sowannee N, Naksuk N (2010) Two-degree-of-freedom simple servo adaptive control for SCARA robot. In: 2010 international conference on control automation and systems (ICCAS), p 480–484
10.
Zurück zum Zitat Suvilath S, Khongsomboun K, Benjanarasuth T, Kominet N (2011) IMC-based PID controllers design for a two-links SCARA robot. In: TENCON 2011–2011 IEEE region 10 conference, p 1030–1034 Suvilath S, Khongsomboun K, Benjanarasuth T, Kominet N (2011) IMC-based PID controllers design for a two-links SCARA robot. In: TENCON 2011–2011 IEEE region 10 conference, p 1030–1034
11.
Zurück zum Zitat Al-Khedher MA, Alshamasin MS (2012) SCARA robot control using neural networks. In: 2012 4th international conference on intelligent and advanced systems (ICIAS), vol 1, pp 126–130 Al-Khedher MA, Alshamasin MS (2012) SCARA robot control using neural networks. In: 2012 4th international conference on intelligent and advanced systems (ICIAS), vol 1, pp 126–130
12.
Zurück zum Zitat Thanok S (2014) Design of an adaptive PD controller with dynamic friction compensation for direct-drive SCARA robot. In: Electrical engineering congress (iEECON), 2014 international. IEEE, 2014 Thanok S (2014) Design of an adaptive PD controller with dynamic friction compensation for direct-drive SCARA robot. In: Electrical engineering congress (iEECON), 2014 international. IEEE, 2014
13.
Zurück zum Zitat Escobar F, Díaz S, Gutiérrez C, Ledeneva Y, Hernández C, Rodríguez D, Lemus R (2014) Simulation of control of a Scara robot actuated by pneumatic artificial muscles using RNAPM. J Appl Res Technol 12(5):939–946CrossRef Escobar F, Díaz S, Gutiérrez C, Ledeneva Y, Hernández C, Rodríguez D, Lemus R (2014) Simulation of control of a Scara robot actuated by pneumatic artificial muscles using RNAPM. J Appl Res Technol 12(5):939–946CrossRef
14.
Zurück zum Zitat Maeda Y, Fujiwara T, Ito H (2014) Robot control using high-dimensional neural networks. In: 2014 Proceedings of the SICE annual conference (SICE), p 738–743 Maeda Y, Fujiwara T, Ito H (2014) Robot control using high-dimensional neural networks. In: 2014 Proceedings of the SICE annual conference (SICE), p 738–743
15.
Zurück zum Zitat Lin TC, Chang SW, Hsu CH (2012) Robust adaptive fuzzy sliding mode control for a class of uncertain discrete-time nonlinear systems. Int J Innov Comput Inf Control 8(1):347–359 Lin TC, Chang SW, Hsu CH (2012) Robust adaptive fuzzy sliding mode control for a class of uncertain discrete-time nonlinear systems. Int J Innov Comput Inf Control 8(1):347–359
16.
Zurück zum Zitat Rossomando FG, Soria C, Carelli R (2014) Sliding mode neuro adaptive control in trajectory tracking for mobile robots. J Intell Robot Syst 74(3):931–944. ISSN: 0921-0296 Rossomando FG, Soria C, Carelli R (2014) Sliding mode neuro adaptive control in trajectory tracking for mobile robots. J Intell Robot Syst 74(3):931–944. ISSN: 0921-0296
17.
Zurück zum Zitat Asada H, Slotine JJE (1986) Robot analysis and control. Wiley, New York Asada H, Slotine JJE (1986) Robot analysis and control. Wiley, New York
Metadaten
Titel
Discrete-time sliding mode neuro-adaptive controller for SCARA robot arm
verfasst von
F. G. Rossomando
C. M. Soria
Publikationsdatum
24.03.2016
Verlag
Springer London
Erschienen in
Neural Computing and Applications / Ausgabe 12/2017
Print ISSN: 0941-0643
Elektronische ISSN: 1433-3058
DOI
https://doi.org/10.1007/s00521-016-2242-7

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