Design of an Electric Commutated Frog-Leg Winding Permanent-Magnet DC Machine

An electric commutated frog-leg winding permanent-magnet (PM) DC machine is proposed in this paper. It has a semi-closed slotted stator with a classical type of mesh winding introduced from the conventional brushed DC machine and a polyphase electric commutation besides a PM excitation rotor and a c...

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Main Authors: Hang Zhang, Yue-Jin Zhang, Chen Li, J. Z. Jiang
Format: Article
Language:English
Published: IFSA Publishing, S.L. 2014-03-01
Series:Sensors & Transducers
Subjects:
Online Access:http://www.sensorsportal.com/HTML/DIGEST/march_2014/Vol_167/P_RP_0082.pdf
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spelling doaj-1120b39bb07f4db79e33f499073f03c92020-11-25T00:35:56ZengIFSA Publishing, S.L.Sensors & Transducers2306-85151726-54792014-03-0116738896Design of an Electric Commutated Frog-Leg Winding Permanent-Magnet DC Machine Hang Zhang0Yue-Jin Zhang1 Chen Li2J. Z. Jiang3Department of Automation, Shanghai University, Shanghai, 200072, ChinaDepartment of Automation, Shanghai University, Shanghai, 200072, ChinaDepartment of Automation, Shanghai University, Shanghai, 200072, ChinaDepartment of Automation, Shanghai University, Shanghai, 200072, ChinaAn electric commutated frog-leg winding permanent-magnet (PM) DC machine is proposed in this paper. It has a semi-closed slotted stator with a classical type of mesh winding introduced from the conventional brushed DC machine and a polyphase electric commutation besides a PM excitation rotor and a circular arrayed Hall position sensor. Under the cooperation between the position sensor and the electric commutation, the proposed machine is basically operated on the same principle of the brushed one. Because of its simplex frog-leg winding, the combination between poles and slots is designed as 4/22, and the number of phases is set as 11. By applying an exact analytical method, which is verified comparable with the finite element analyses (FEA), to the prediction of its instantaneous magnetic field, electromotive force (EMF), cogging torque and output torque, it is well designed with a series of parameters in dimension aiming at the lowest cogging torque. A 230 W, 4-pole, and 22-slot new machine is prototyped and tested to verify the analysis. http://www.sensorsportal.com/HTML/DIGEST/march_2014/Vol_167/P_RP_0082.pdfDC machineElectric commutationPermanent magnetSimplex frog-leg winding.
collection DOAJ
language English
format Article
sources DOAJ
author Hang Zhang
Yue-Jin Zhang
Chen Li
J. Z. Jiang
spellingShingle Hang Zhang
Yue-Jin Zhang
Chen Li
J. Z. Jiang
Design of an Electric Commutated Frog-Leg Winding Permanent-Magnet DC Machine
Sensors & Transducers
DC machine
Electric commutation
Permanent magnet
Simplex frog-leg winding.
author_facet Hang Zhang
Yue-Jin Zhang
Chen Li
J. Z. Jiang
author_sort Hang Zhang
title Design of an Electric Commutated Frog-Leg Winding Permanent-Magnet DC Machine
title_short Design of an Electric Commutated Frog-Leg Winding Permanent-Magnet DC Machine
title_full Design of an Electric Commutated Frog-Leg Winding Permanent-Magnet DC Machine
title_fullStr Design of an Electric Commutated Frog-Leg Winding Permanent-Magnet DC Machine
title_full_unstemmed Design of an Electric Commutated Frog-Leg Winding Permanent-Magnet DC Machine
title_sort design of an electric commutated frog-leg winding permanent-magnet dc machine
publisher IFSA Publishing, S.L.
series Sensors & Transducers
issn 2306-8515
1726-5479
publishDate 2014-03-01
description An electric commutated frog-leg winding permanent-magnet (PM) DC machine is proposed in this paper. It has a semi-closed slotted stator with a classical type of mesh winding introduced from the conventional brushed DC machine and a polyphase electric commutation besides a PM excitation rotor and a circular arrayed Hall position sensor. Under the cooperation between the position sensor and the electric commutation, the proposed machine is basically operated on the same principle of the brushed one. Because of its simplex frog-leg winding, the combination between poles and slots is designed as 4/22, and the number of phases is set as 11. By applying an exact analytical method, which is verified comparable with the finite element analyses (FEA), to the prediction of its instantaneous magnetic field, electromotive force (EMF), cogging torque and output torque, it is well designed with a series of parameters in dimension aiming at the lowest cogging torque. A 230 W, 4-pole, and 22-slot new machine is prototyped and tested to verify the analysis.
topic DC machine
Electric commutation
Permanent magnet
Simplex frog-leg winding.
url http://www.sensorsportal.com/HTML/DIGEST/march_2014/Vol_167/P_RP_0082.pdf
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