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Switched Reluctance Linear Motor Force Ripple Suppression Based on Fixed Frequency Implicit Generalized Predictive Self-Correction Controller

Liu, Jinfu; Chen, Hao; Wang, Xing; Wheeler, Patrick; Fernão Pires, Vitor; Martins, João; Musolino, Antonino; Gorbounov, Yassen; Torkaman, Hossein

Switched Reluctance Linear Motor Force Ripple Suppression Based on Fixed Frequency Implicit Generalized Predictive Self-Correction Controller Thumbnail


Authors

Jinfu Liu

Hao Chen

Xing Wang

Vitor Fernão Pires

João Martins

Antonino Musolino

Yassen Gorbounov

Hossein Torkaman



Abstract

An implicit generalized predictive self-correction controller (IGPC) is proposed in this paper to suppress the force ripple of switched reluctance linear motors (SRLMs). Due to its good robustness and rolling optimization features, the dynamic matrix controller (DMC), a kind of multi-step model predictive controller, is considered an effective method to suppress the force ripple of SRLMs. However, because DMC uses a fixed predictive model, it has high requirements for the accuracy of the predictive model, and the non-linear SRLMs make it difficult to adapt to different loads. To ease this problem, the IGPC proposed in this paper adopts a more flexible predictive model and improves the generalized predictive controller (GPC) to avoid solving the Diophantine equation online, which can adapt to different loads and reduce the system's burden. Besides, the proposed IGPC reduces the computational burden during matrix operations compared to DMC. In the simulation and experimental test based on a 100W 6/4 double-sided SRLM (DSRLM), the proposed IGPC is compared with DMC, and the force distribution function (FDF) adopts the current hysteresis, the results show that the proposed IGPC a better force ripple suppressing performance and has better load capacity compared with DMC.

Journal Article Type Article
Acceptance Date Feb 4, 2024
Online Publication Date Feb 26, 2024
Publication Date 2024
Deposit Date Apr 29, 2024
Publicly Available Date Apr 29, 2024
Journal IEEE Transactions on Energy Conversion
Print ISSN 0885-8969
Electronic ISSN 1558-0059
Publisher Institute of Electrical and Electronics Engineers
Peer Reviewed Peer Reviewed
DOI https://doi.org/10.1109/tec.2024.3369867
Keywords Predictive models , Motors , Torque , Mathematical models , Reluctance motors , Force , Monte Carlo methods , Switched reluctance linear motor , Predictive control , Generalized predictive control , Self-correction controller Force ripple suppression
Public URL https://nottingham-repository.worktribe.com/output/32450564
Publisher URL https://ieeexplore.ieee.org/document/10444924

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