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<ArticleSet>
<Article>
<Journal>
<PublisherName>OICC Press</PublisherName>
<JournalTitle>Majlesi Journal of Electrical Engineering</JournalTitle>
<Issn>2345-3796</Issn>
<Volume>1</Volume>
<Issue>3</Issue>
<PubDate PubStatus="epublish">
<Year>2024</Year>
<Month>02</Month>
<Day>28</Day>
</PubDate>
</Journal>
<ArticleTitle>Stator Flux Oriented Vector Control of Interior Permanent Magnet Synchronous Motors with Maximum Power Factor Per Ampere Strategy</ArticleTitle>
<VernacularTitle></VernacularTitle>
<FirstPage></FirstPage>
<LastPage></LastPage>
<ELocationID EIdType="doi">10.1234/mjee.v1i3.33</ELocationID>
<Language>EN</Language>
<AuthorList>
<Author>
<FirstName>OICC</FirstName>
<LastName>Press Authors</LastName>
<Affiliation>Various OICC Press Authors</Affiliation>
<Identifier Source="ORCID"></Identifier>
</Author>
</AuthorList>
<PublicationType>Journal Article</PublicationType>
<History>
<PubDate PubStatus="received">
<Year>2024</Year>
<Month>02</Month>
<Day>28</Day>
</PubDate>
</History>
<Abstract>Permanent magnet synchronous motors attract more attentions in motion control application in recent years. In this paper a novel stator flux oriented vector control scheme with maximum power factor to current trajectory is presented for a permanent magnet synchronous motor. This system is then implemented in Matlab/Simulink and the motor performance under this control method is investigated via excessive simulation results. Finally, the effect of stator resistance on the power factor of motor is shown.</Abstract>
<ObjectList>
<Object Type="keyword">
<Param Name="value">Interior Permanent Magnet</Param>
</Object>
<Object Type="keyword">
<Param Name="value">Power Factor Per Ampere. stator resistance</Param>
</Object>
<Object Type="keyword">
<Param Name="value">Synchronous motors</Param>
</Object>
<Object Type="keyword">
<Param Name="value">Vector Control.</Param>
</Object>
</ObjectList>
</Article>
</ArticleSet>