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Article

An Adaptive Discrete Integral Terminal Sliding Mode Control Method for a Two-Joint Manipulator

1
School of Mechanical and Electrical Engineering, Quzhou College of Technology, Quzhou 324000, China
2
College of Communication Engineering, Jilin University, Changchun 130022, China
3
China Railway Wuhan Bureau Group Co., Ltd. Wuhan EMU Depot, Wuhan 430080, China
*
Author to whom correspondence should be addressed.
Processes 2024, 12(6), 1106; https://doi.org/10.3390/pr12061106
Submission received: 24 March 2024 / Revised: 21 May 2024 / Accepted: 25 May 2024 / Published: 28 May 2024
(This article belongs to the Section Automation Control Systems)

Abstract

In response to the trajectory tracking control problem of manipulators under measurement disturbances, a novel multi-input multi-output discrete integral terminal sliding mode control scheme is proposed. Initially, this scheme establishes a dynamic model of a two-joint manipulator based on the Lagrangian dynamics analysis method. Subsequently, a discrete integral terminal sliding mode control law based on the dynamic model of the two joints is designed, incorporating delayed estimation of unknown disturbances and discretization errors in the manipulator system. To enhance the trajectory tracking accuracy of the control scheme and suppress the impact of sliding mode chattering on the manipulator system, an adaptive switching term is introduced into the discrete integral terminal sliding mode control law. The paper derives an adaptive discrete integral terminal sliding mode control scheme and provides stability proof for the proposed approach. Simulation experiments are conducted to compare the proposed adaptive discrete integral terminal sliding mode control scheme with classical discrete sliding mode control schemes and discrete integral terminal sliding mode control schemes. The simulation results demonstrate that the designed adaptive discrete integral terminal sliding mode control scheme maintains trajectory tracking errors within 0.004 radians for each joint of the manipulator, with minimal changes in control torque for each joint. The absolute integral of the control torque variations is calculated at 5.85×103, which is lower than other control schemes, thereby validating the effectiveness and superiority of the proposed approach.
Keywords: adaptive control; discrete integral terminal sliding mode control; disturbance delay estimation; manipulator; trajectory tracking adaptive control; discrete integral terminal sliding mode control; disturbance delay estimation; manipulator; trajectory tracking

Share and Cite

MDPI and ACS Style

Xu, J.; Sui, Z.; Wang, W.; Xu, F. An Adaptive Discrete Integral Terminal Sliding Mode Control Method for a Two-Joint Manipulator. Processes 2024, 12, 1106. https://doi.org/10.3390/pr12061106

AMA Style

Xu J, Sui Z, Wang W, Xu F. An Adaptive Discrete Integral Terminal Sliding Mode Control Method for a Two-Joint Manipulator. Processes. 2024; 12(6):1106. https://doi.org/10.3390/pr12061106

Chicago/Turabian Style

Xu, Jianliang, Zhen Sui, Wenduo Wang, and Feng Xu. 2024. "An Adaptive Discrete Integral Terminal Sliding Mode Control Method for a Two-Joint Manipulator" Processes 12, no. 6: 1106. https://doi.org/10.3390/pr12061106

APA Style

Xu, J., Sui, Z., Wang, W., & Xu, F. (2024). An Adaptive Discrete Integral Terminal Sliding Mode Control Method for a Two-Joint Manipulator. Processes, 12(6), 1106. https://doi.org/10.3390/pr12061106

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