2012 ©
             Publication
Journal Publication
Title of Article Optimal Stator Design of Doubly Salient Permanent Magnet Generator for Enhancing the Electromagnetic Performance  
Date of Acceptance 19 August 2019 
Journal
     Title of Journal Energies 
     Standard  
     Institute of Journal MDPI 
     ISBN/ISSN  
     Volume  
     Issue  
     Month
     Year of Publication 2019 
     Page  
     Abstract An optimal stator design technique of a three-phase doubly salient permanent magnet generator (DSPMG) for improving the soutput power is proposed. The stator configuration was optimally designed by adjusting the stator pole depth and stator pole arc. The trapezoid outer stator tip was also designed. Then, the output characteristics of the designed DSPMG including the flux linkage, electromotive force (EMF), harmonic, cogging torque, efficiency, magnetic flux distribution andvoltageregulationwerecharacterizedbyusingthefiniteelementmethod. Resultswerecompared to the original structure in the literature. It was found that the flux linkage, EMF, cogging torque, and efficiency of the proposed DSPMG were significantly improved after the stator pole depth and stator pole arc were suitably modified. Further details of optimal stator pole depth and stator pole arc are presented. The EMF produced by the optimal proposed structure was 47% higher than that of the conventional structure, while 56% cogging torque improvement and 20% increased efficiency were achieved. The EMF generated by the proposed structure was classified in the high-range scale compared to the other existing models. The symmetrical magnetic flux distribution of all structures was indicated. The voltage regulation of the modified structure was also significantly improved from the conventional model. The proposed design technique can be utilized to maximize the electromagnetic performance of this particular generator type.  
     Keyword permanent magnet machine; doubly salient permanent magnet generator; magnetic flux linkage; electromotive force; voltage regulation 
Author
605040103-6 Mr. VANNAKONE LOUNTHAVONG [Main Author]
Engineering Master's Degree

Reviewing Status มีผู้ประเมินอิสระ 
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Level of Publication นานาชาติ 
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