UM  > Faculty of Science and Technology  > DEPARTMENT OF ELECTROMECHANICAL ENGINEERING
Status已發表Published
Piezoelectric Nanopositioning Control Using Second-Order Discrete-Time Terminal Sliding Mode Strategy
Xu, Q.
2015-12-01
Source PublicationIEEE Transactions on Industrial Electronics
ISSN0278-0046
Pages7738-7748
AbstractThis paper presents the design of a novel second-order discrete-time terminal sliding-mode control (2-DTSMC) strategy and its application to motion tracking control of a piezoelectric nanopositioning system, which possesses a high-order plant model. The 2-DTSMC strategy is established based on the output feedback only, which eliminates the use of a state observer and facilitates an easy realization. Theoretical analysis proves that the quasi-sliding mode is reached in finite time along with high accuracy of the output tracking. The effectiveness of the proposed control scheme is validated through comparative investigations. Experimental results show that the 2-DTSMC strategy is superior to traditional discrete-time sliding-mode control (DSMC), second-order DSMC, and DTSMC algorithms in terms of motion tracking accuracy, which demonstrates the efficiency of the reported 2-DTSMC scheme with a second-order nonlinear sliding surface.
KeywordHigh-order sliding mode Piezoelectric devices high-order sliding mode nanopositioning precision motion control quasi-sliding mode terminal sliding mode
URLView the original
Language英語English
The Source to ArticlePB_Publication
PUB ID16576
Document TypeJournal article
CollectionDEPARTMENT OF ELECTROMECHANICAL ENGINEERING
Corresponding AuthorXu, Q.
Recommended Citation
GB/T 7714
Xu, Q.. Piezoelectric Nanopositioning Control Using Second-Order Discrete-Time Terminal Sliding Mode Strategy[J]. IEEE Transactions on Industrial Electronics, 2015, 7738-7748.
APA Xu, Q..(2015). Piezoelectric Nanopositioning Control Using Second-Order Discrete-Time Terminal Sliding Mode Strategy. IEEE Transactions on Industrial Electronics, 7738-7748.
MLA Xu, Q.."Piezoelectric Nanopositioning Control Using Second-Order Discrete-Time Terminal Sliding Mode Strategy".IEEE Transactions on Industrial Electronics (2015):7738-7748.
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