2017
DOI: 10.1007/s12046-017-0687-8
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Design, analysis and fabrication of a linear permanent magnet synchronous machine

Abstract: This paper deals with the design, analysis and fabrication of a 320 W, 5 m/s, 4-pole permanentmagnet-based linear synchronous machine (LPMSM). The design deals with conventional hand calculations followed by design fine-tuning and analysis using standard FEM packages. Fabrication of the machine has been also done at the works of a local small machine manufacturer after procurement of imported permanent magnets (PMs). The work presented here focuses on design and fabrication of LPMSM linor stampings with fixed … Show more

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Cited by 10 publications
(3 citation statements)
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“…The process of the Halbach magnetization will be implemented by moving magnet with a longitudinal flux path because moving magnet has a small working magnetic air gap [14] that yields to the higher forces via a higher magnetic field. It also has higher efficiency as requiring less amount of permanent magnet compare to moving coil, which needs more coil for the same output [27]. Thus, the proposed design will come out with the features of the tubular longitudinal slotless stator, and Halbach magnetization.…”
Section: Proposed Design Topologiesmentioning
confidence: 99%
“…The process of the Halbach magnetization will be implemented by moving magnet with a longitudinal flux path because moving magnet has a small working magnetic air gap [14] that yields to the higher forces via a higher magnetic field. It also has higher efficiency as requiring less amount of permanent magnet compare to moving coil, which needs more coil for the same output [27]. Thus, the proposed design will come out with the features of the tubular longitudinal slotless stator, and Halbach magnetization.…”
Section: Proposed Design Topologiesmentioning
confidence: 99%
“…The conventional food and beverage application is divided into several main parts, such as sushi conveyer belt, chain, and motor. When food or beverage is placed on a sushi conveyer belt, the chain that is attached to the motor moves the sushi conveyer belt continuously from Point A to Point B [8]- [10]. The conventional F&B needs an additional space to locate the motor and control panel.…”
Section: Introductionmentioning
confidence: 99%
“…due to the deviations from the design parameters, there are various parasitic forces and torques for which the classical commutation could not compensate. In [22], a 320 W, 5 m/s and four-pole permanent magnet based linear synchronous machine is designed and manufactured. The design deals with conventional hand calculations followed by design fine-tuning and analysis using standard FEM packages.…”
Section: Introductionmentioning
confidence: 99%