An Analytical Subdomain Model of Torque Dense Halbach Array Motors

A two-dimensional mathematical model estimating the torque of a Halbach Array surface permanent magnet (SPM) motor with a non-overlapping winding layout is developed. The magnetic field domain for the two-dimensional (2-D) motor model is divided into five regions: slots, slot openings, air gap, roto...

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Main Authors: Moadh Mallek, Yingjie Tang, Jaecheol Lee, Taoufik Wassar, Matthew A. Franchek, Jay Pickett
Format: Article
Language:English
Published: MDPI AG 2018-11-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/11/12/3254
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spelling doaj-787e3fd1e2724adc8174ae1806f009a32020-11-25T00:37:30ZengMDPI AGEnergies1996-10732018-11-011112325410.3390/en11123254en11123254An Analytical Subdomain Model of Torque Dense Halbach Array MotorsMoadh Mallek0Yingjie Tang1Jaecheol Lee2Taoufik Wassar3Matthew A. Franchek4Jay Pickett5Department of Mechanical Engineering, University of Houston, Houston, TX 77004, USADepartment of Mechanical Engineering, University of Houston, Houston, TX 77004, USADepartment of Mechanical Engineering, University of Houston, Houston, TX 77004, USADepartment of Mechanical Engineering, University of Houston, Houston, TX 77004, USADepartment of Mechanical Engineering, University of Houston, Houston, TX 77004, USATechnology Development, NOV Corporate Engineering, Houston, TX 77036, USAA two-dimensional mathematical model estimating the torque of a Halbach Array surface permanent magnet (SPM) motor with a non-overlapping winding layout is developed. The magnetic field domain for the two-dimensional (2-D) motor model is divided into five regions: slots, slot openings, air gap, rotor magnets and rotor back iron. Applying the separation of variable method, an expression of magnetic vector potential distribution can be represented as Fourier series. By considering the interface and boundary conditions connecting the proposed regions, the Fourier series constants are determined. The proposed model offers a computationally efficient approach to analyze SPM motor designs including those having a Halbach Array. Since the tooth-tip and slots parameters are included in the model, the electromagnetic performance of an SPM motor, described using the cogging torque, back-EMF and electromagnetic torque, can be calculated as function of the slots and tooth-tips effects. The proposed analytical predictions are compared with results obtained from finite-element analysis. Finally, a performance comparison between a conventional and Halbach Array SPM motor is performed.https://www.mdpi.com/1996-1073/11/12/3254mathematical modelHalbach Arraysurface permanent magnetmagnetic vector potentialtorque
collection DOAJ
language English
format Article
sources DOAJ
author Moadh Mallek
Yingjie Tang
Jaecheol Lee
Taoufik Wassar
Matthew A. Franchek
Jay Pickett
spellingShingle Moadh Mallek
Yingjie Tang
Jaecheol Lee
Taoufik Wassar
Matthew A. Franchek
Jay Pickett
An Analytical Subdomain Model of Torque Dense Halbach Array Motors
Energies
mathematical model
Halbach Array
surface permanent magnet
magnetic vector potential
torque
author_facet Moadh Mallek
Yingjie Tang
Jaecheol Lee
Taoufik Wassar
Matthew A. Franchek
Jay Pickett
author_sort Moadh Mallek
title An Analytical Subdomain Model of Torque Dense Halbach Array Motors
title_short An Analytical Subdomain Model of Torque Dense Halbach Array Motors
title_full An Analytical Subdomain Model of Torque Dense Halbach Array Motors
title_fullStr An Analytical Subdomain Model of Torque Dense Halbach Array Motors
title_full_unstemmed An Analytical Subdomain Model of Torque Dense Halbach Array Motors
title_sort analytical subdomain model of torque dense halbach array motors
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2018-11-01
description A two-dimensional mathematical model estimating the torque of a Halbach Array surface permanent magnet (SPM) motor with a non-overlapping winding layout is developed. The magnetic field domain for the two-dimensional (2-D) motor model is divided into five regions: slots, slot openings, air gap, rotor magnets and rotor back iron. Applying the separation of variable method, an expression of magnetic vector potential distribution can be represented as Fourier series. By considering the interface and boundary conditions connecting the proposed regions, the Fourier series constants are determined. The proposed model offers a computationally efficient approach to analyze SPM motor designs including those having a Halbach Array. Since the tooth-tip and slots parameters are included in the model, the electromagnetic performance of an SPM motor, described using the cogging torque, back-EMF and electromagnetic torque, can be calculated as function of the slots and tooth-tips effects. The proposed analytical predictions are compared with results obtained from finite-element analysis. Finally, a performance comparison between a conventional and Halbach Array SPM motor is performed.
topic mathematical model
Halbach Array
surface permanent magnet
magnetic vector potential
torque
url https://www.mdpi.com/1996-1073/11/12/3254
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