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114483

SPEED CONTROL DESIGN OF A PMSM BASED ON FUNCTIONAL MODEL PREDICTIVE APPROACH

Article

Last updated: 26 Dec 2024

Subjects

-

Tags

Electrical Engineering, Computer Engineering and Electrical power and machines engineering.

Abstract

This paper investigates the application of the model predictive control (MPC) approach to control the speed of a permanent magnet synchronous motor (PMSM) drive system. The MPC is used to calculate the optimal control actions including system constraints. To alleviate computational effort and to reduce numerical problems, particularly in large prediction horizon, an exponentially weighted functional model predictive control (FMPC) is employed. In order to validate the effectiveness of the proposed FMPC scheme, the performance of the proposed controller is compared with a classical PI controller through simulation studies. Obtained results show that accurate tracking performance of the PMSM has been achieved.

DOI

10.21608/jesaun.2012.114483

Keywords

Predictive Control, functional model predictive control, permanent magnet synchronous motor

Authors

First Name

A. A.

Last Name

Hassan

MiddleName

-

Affiliation

Electrical Dep., Faculty of Engineering, El-Minia University, Egypt

Email

aahsn@yahoo.com

City

-

Orcid

-

First Name

Ahmed M.

Last Name

Kassem

MiddleName

-

Affiliation

Control Technology Dep., Beni-Suef University, Egypt

Email

kassem_ahmed53@hotmail.com

City

-

Orcid

-

Volume

40

Article Issue

No 4

Related Issue

16870

Issue Date

2012-07-01

Receive Date

2012-01-19

Publish Date

2012-07-01

Page Start

1,121

Page End

1,135

Print ISSN

1687-0530

Online ISSN

2356-8550

Link

https://jesaun.journals.ekb.eg/article_114483.html

Detail API

https://jesaun.journals.ekb.eg/service?article_code=114483

Order

11

Type

Research Paper

Type Code

1,438

Publication Type

Journal

Publication Title

JES. Journal of Engineering Sciences

Publication Link

https://jesaun.journals.ekb.eg/

MainTitle

SPEED CONTROL DESIGN OF A PMSM BASED ON FUNCTIONAL MODEL PREDICTIVE APPROACH

Details

Type

Article

Created At

23 Jan 2023