A Duty Cycle based Finite-set Model Predictive Torque Control for Permanent Magnet Synchronous Motor Drives

Hejin Yang, Xinan Zhang, Wang Youyi

Research output: Chapter in Book/Conference paperConference paper

Abstract

This paper presents a duty cycle based finite-set model predictive torque control (FS-MPTC) for permanent magnet synchronous motor drives. The proposed method contributes to significantly reduce torque ripples experienced in conventional FS-MPTC by using two voltage vectors (VVs) in one sampling cycle. The duty ratio of active VV is determined based on PI controller, which equivalently adjusts the weighting between torque and flux control in FS-MPTC. The validity of the proposed method is verified through simulations.

Original languageEnglish
Title of host publication2018 IEEE 4th Southern Power Electronics Conference, SPEC 2018
Place of PublicationSingapore
PublisherIEEE, Institute of Electrical and Electronics Engineers
ISBN (Electronic)9781538682579
DOIs
Publication statusPublished - 5 Feb 2019
Externally publishedYes
Event4th IEEE Southern Power Electronics Conference, SPEC 2018 - Singapore, Singapore
Duration: 10 Dec 201813 Dec 2018

Publication series

Name2018 IEEE 4th Southern Power Electronics Conference, SPEC 2018

Conference

Conference4th IEEE Southern Power Electronics Conference, SPEC 2018
CountrySingapore
CitySingapore
Period10/12/1813/12/18

Fingerprint

Torque control
Synchronous motors
Permanent magnets
Torque
Electric potential
Fluxes
Sampling
Controllers

Cite this

Yang, H., Zhang, X., & Youyi, W. (2019). A Duty Cycle based Finite-set Model Predictive Torque Control for Permanent Magnet Synchronous Motor Drives. In 2018 IEEE 4th Southern Power Electronics Conference, SPEC 2018 [8636056] (2018 IEEE 4th Southern Power Electronics Conference, SPEC 2018). Singapore: IEEE, Institute of Electrical and Electronics Engineers. https://doi.org/10.1109/SPEC.2018.8636056
Yang, Hejin ; Zhang, Xinan ; Youyi, Wang. / A Duty Cycle based Finite-set Model Predictive Torque Control for Permanent Magnet Synchronous Motor Drives. 2018 IEEE 4th Southern Power Electronics Conference, SPEC 2018. Singapore : IEEE, Institute of Electrical and Electronics Engineers, 2019. (2018 IEEE 4th Southern Power Electronics Conference, SPEC 2018).
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abstract = "This paper presents a duty cycle based finite-set model predictive torque control (FS-MPTC) for permanent magnet synchronous motor drives. The proposed method contributes to significantly reduce torque ripples experienced in conventional FS-MPTC by using two voltage vectors (VVs) in one sampling cycle. The duty ratio of active VV is determined based on PI controller, which equivalently adjusts the weighting between torque and flux control in FS-MPTC. The validity of the proposed method is verified through simulations.",
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Yang, H, Zhang, X & Youyi, W 2019, A Duty Cycle based Finite-set Model Predictive Torque Control for Permanent Magnet Synchronous Motor Drives. in 2018 IEEE 4th Southern Power Electronics Conference, SPEC 2018., 8636056, 2018 IEEE 4th Southern Power Electronics Conference, SPEC 2018, IEEE, Institute of Electrical and Electronics Engineers, Singapore, 4th IEEE Southern Power Electronics Conference, SPEC 2018, Singapore, Singapore, 10/12/18. https://doi.org/10.1109/SPEC.2018.8636056

A Duty Cycle based Finite-set Model Predictive Torque Control for Permanent Magnet Synchronous Motor Drives. / Yang, Hejin; Zhang, Xinan; Youyi, Wang.

2018 IEEE 4th Southern Power Electronics Conference, SPEC 2018. Singapore : IEEE, Institute of Electrical and Electronics Engineers, 2019. 8636056 (2018 IEEE 4th Southern Power Electronics Conference, SPEC 2018).

Research output: Chapter in Book/Conference paperConference paper

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Yang H, Zhang X, Youyi W. A Duty Cycle based Finite-set Model Predictive Torque Control for Permanent Magnet Synchronous Motor Drives. In 2018 IEEE 4th Southern Power Electronics Conference, SPEC 2018. Singapore: IEEE, Institute of Electrical and Electronics Engineers. 2019. 8636056. (2018 IEEE 4th Southern Power Electronics Conference, SPEC 2018). https://doi.org/10.1109/SPEC.2018.8636056