Hu, Guanyang, Pan, Tinglong, Huang, Wentao, Yan, Xinggang, Yang, Weilin, Xu, Dezhi (2024) A novel sliding mode speed control–based strategy for permanent magnet linear synchronous motors with a model predictive current control loop. Transactions of the Institute of Measurement and Control, . ISSN 0142-3312. E-ISSN 1477-0369. (doi:10.1177/01423312241237676) (KAR id:105571)
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Official URL: https://doi.org/10.1177/01423312241237676 |
Abstract
Model predictive control (MPC) has been widely investigated as an advanced control method for permanent magnet linear synchronous motors (PMLSMs). It is known that the computational burden is usually heavy when multi-step MPC is considered. In this paper, a computationally efficient multi-step continuous control set MPC approach is proposed for the current control loop of a PMLSM. A non-singular terminal sliding mode control is employed for the speed control loop to reduce the influence caused by external disturbances. To further improve the closed-loop control performance, a load observer is designed to estimate the load changes in real time. Simulations and experiments reveal the effectiveness of the proposed control method for PMLSMs, which facilitates practical applications.
Item Type: | Article |
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DOI/Identification number: | 10.1177/01423312241237676 |
Uncontrolled keywords: | Instrumentation |
Subjects: | T Technology > TA Engineering (General). Civil engineering (General) |
Divisions: | Divisions > Division of Computing, Engineering and Mathematical Sciences > School of Engineering and Digital Arts |
Funders: | National Natural Science Foundation of China (https://ror.org/01h0zpd94) |
SWORD Depositor: | JISC Publications Router |
Depositing User: | JISC Publications Router |
Date Deposited: | 24 Apr 2024 15:02 UTC |
Last Modified: | 05 Nov 2024 13:11 UTC |
Resource URI: | https://kar.kent.ac.uk/id/eprint/105571 (The current URI for this page, for reference purposes) |
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