2023
DOI: 10.21203/rs.3.rs-3189497/v1
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Solving Partial Derivation Equations in Detail in Double- Rotor Flux Switching Permanent Magnet with H-Shape Stator Machines to Obtain Magnetic Flux Density

Abstract: In this paper, aim is turning double-rotor flux switching permanent magnet with H-shape stator machine (DRFSPMWHSSMs) into mathematical equations via Maxwell relations to provide a 3-quasi model for calculating flux density at arbitrary point of DRFSPMWHSSMs. Remarkable reason for opting this type of machine is 2 rotors can be energized only by integrated stator that is an obstacle against squandering core loss. Merging reluctance and permanent magnet machine into a configuration has high advantages like recei… Show more

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Cited by 5 publications
(1 citation statement)
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References 43 publications
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“…If the interface is source-free, as result the parallel component of the magnetic field intensity vector on one side of the boundary is equal to that of the other side in according to table1 . Also, the parallel component of the magnetic field intensity vector is zero at the interface of those media adjacent to infinitely permeable domains that solving the nonlinear equations are done by Shwarz-Christoffel formula [35][36][37][38][39][40][41][42][43].…”
Section: Boundary Conditionsmentioning
confidence: 99%
“…If the interface is source-free, as result the parallel component of the magnetic field intensity vector on one side of the boundary is equal to that of the other side in according to table1 . Also, the parallel component of the magnetic field intensity vector is zero at the interface of those media adjacent to infinitely permeable domains that solving the nonlinear equations are done by Shwarz-Christoffel formula [35][36][37][38][39][40][41][42][43].…”
Section: Boundary Conditionsmentioning
confidence: 99%