A New Widely and Stably Adaptive Sliding-Mode Control With Nonsingular Terminal Sliding Variable for Robot Manipulators

This paper presents a new widely and stably adaptive sliding-mode control (WS-ASMC) with nonsingular terminal sliding variable to enhance the performance in reaching and sliding phases. The proposed WS-ASMC has developed new widely and stably adaptive switching gains (W-ASG and S-ASG). The W-ASG is...

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Main Authors: Jaemin Baek, Wookyong Kwon, Changmook Kang
Format: Article
Language:English
Published: IEEE 2020-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/9019678/
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spelling doaj-f4f7f0c41efd4e68af0202a49b11089a2021-03-30T03:09:30ZengIEEEIEEE Access2169-35362020-01-018434434345410.1109/ACCESS.2020.29774349019678A New Widely and Stably Adaptive Sliding-Mode Control With Nonsingular Terminal Sliding Variable for Robot ManipulatorsJaemin Baek0https://orcid.org/0000-0001-9115-9452Wookyong Kwon1https://orcid.org/0000-0002-3656-2043Changmook Kang2https://orcid.org/0000-0003-2467-2074The 1st Research and Development Institute −5rd Directorate, Agency for Defense Development (ADD), Daejeon, South KoreaSmart Mobility Research Section, Electronics and Telecommunications Research Institute (ETRI), Daegu, South KoreaDepartment of Electrical and Engineering, Incheon National University, Incheon, South KoreaThis paper presents a new widely and stably adaptive sliding-mode control (WS-ASMC) with nonsingular terminal sliding variable to enhance the performance in reaching and sliding phases. The proposed WS-ASMC has developed new widely and stably adaptive switching gains (W-ASG and S-ASG). The W-ASG is based on an adaptive law with a fast adaptation rate to appropriately suppress the errors generated by using state information from previous time. Therefore, it provides a fast convergence rate in the reaching phase. The S-ASG is directly designed to be related to the negative magnitude of sliding variables. It helps to enhance the system stability while providing a fast convergence rate from the W-ASG. A nonsingular terminal sliding variable is applied to the proposed WS-ASMC. It has strong attractivity and hence improves the convergence rate in the sliding phase. Additionally, as it exhibits a synergistic effect with the S-ASG, it is a solution to mitigate the problem of the insufficient control torque generated by applying this sliding variable. Based on these benefits, the proposed WS-ASMC can provide precise tracking performance with robustness owing to the synergistic effects of the enhanced reaching and sliding phases. It is shown that the tracking errors are uniformly ultimately bounded. The effectiveness of the proposed control is clearly demonstrated through the simulation of robot manipulators and is compared with that of existing control approaches.https://ieeexplore.ieee.org/document/9019678/Adaptive sliding-mode controltime-delayed controlnonsingular terminal sliding variablefast adaptationtracking controlrobot manipulator
collection DOAJ
language English
format Article
sources DOAJ
author Jaemin Baek
Wookyong Kwon
Changmook Kang
spellingShingle Jaemin Baek
Wookyong Kwon
Changmook Kang
A New Widely and Stably Adaptive Sliding-Mode Control With Nonsingular Terminal Sliding Variable for Robot Manipulators
IEEE Access
Adaptive sliding-mode control
time-delayed control
nonsingular terminal sliding variable
fast adaptation
tracking control
robot manipulator
author_facet Jaemin Baek
Wookyong Kwon
Changmook Kang
author_sort Jaemin Baek
title A New Widely and Stably Adaptive Sliding-Mode Control With Nonsingular Terminal Sliding Variable for Robot Manipulators
title_short A New Widely and Stably Adaptive Sliding-Mode Control With Nonsingular Terminal Sliding Variable for Robot Manipulators
title_full A New Widely and Stably Adaptive Sliding-Mode Control With Nonsingular Terminal Sliding Variable for Robot Manipulators
title_fullStr A New Widely and Stably Adaptive Sliding-Mode Control With Nonsingular Terminal Sliding Variable for Robot Manipulators
title_full_unstemmed A New Widely and Stably Adaptive Sliding-Mode Control With Nonsingular Terminal Sliding Variable for Robot Manipulators
title_sort new widely and stably adaptive sliding-mode control with nonsingular terminal sliding variable for robot manipulators
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2020-01-01
description This paper presents a new widely and stably adaptive sliding-mode control (WS-ASMC) with nonsingular terminal sliding variable to enhance the performance in reaching and sliding phases. The proposed WS-ASMC has developed new widely and stably adaptive switching gains (W-ASG and S-ASG). The W-ASG is based on an adaptive law with a fast adaptation rate to appropriately suppress the errors generated by using state information from previous time. Therefore, it provides a fast convergence rate in the reaching phase. The S-ASG is directly designed to be related to the negative magnitude of sliding variables. It helps to enhance the system stability while providing a fast convergence rate from the W-ASG. A nonsingular terminal sliding variable is applied to the proposed WS-ASMC. It has strong attractivity and hence improves the convergence rate in the sliding phase. Additionally, as it exhibits a synergistic effect with the S-ASG, it is a solution to mitigate the problem of the insufficient control torque generated by applying this sliding variable. Based on these benefits, the proposed WS-ASMC can provide precise tracking performance with robustness owing to the synergistic effects of the enhanced reaching and sliding phases. It is shown that the tracking errors are uniformly ultimately bounded. The effectiveness of the proposed control is clearly demonstrated through the simulation of robot manipulators and is compared with that of existing control approaches.
topic Adaptive sliding-mode control
time-delayed control
nonsingular terminal sliding variable
fast adaptation
tracking control
robot manipulator
url https://ieeexplore.ieee.org/document/9019678/
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