Li et al., 2012 - Google Patents
Minimization of cogging torque in fractional-slot axial flux permanent magnet synchronous machine with conventional structureLi et al., 2012
- Document ID
- 5910040183071270630
- Author
- Li J
- Choi D
- Lee S
- Jang J
- Cho Y
- Publication year
- Publication venue
- 2012 Sixth International Conference on Electromagnetic Field Problems and Applications
External Links
Snippet
This paper studies minimization of cogging torque in fractional-slot winding axial flux PM machines without skewing rotor magnets or displacing stator slots. Fractional winding has small cogging torque which is highlight for applications such as wind turbines. Cogging …
- 230000004907 flux 0 title abstract description 15
Classifications
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K1/00—Details of the magnetic circuit
- H02K1/06—Details of the magnetic circuit characterised by the shape, form or construction
- H02K1/22—Rotating parts of the magnetic circuit
- H02K1/27—Rotor cores with permanent magnets
- H02K1/2706—Inner rotor
- H02K1/272—Inner rotor where the magnetisation axis of the magnets is radial or tangential
- H02K1/274—Inner rotor where the magnetisation axis of the magnets is radial or tangential consisting of a plurality of circumferentially positioned magnets
- H02K1/2753—Inner rotor where the magnetisation axis of the magnets is radial or tangential consisting of a plurality of circumferentially positioned magnets consisting of magnets or groups of magnets arranged with alternating polarity
- H02K1/276—Magnets embedded in the magnetic core
- H02K1/2766—Magnets embedded in the magnetic core having a flux concentration effect
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K1/00—Details of the magnetic circuit
- H02K1/06—Details of the magnetic circuit characterised by the shape, form or construction
- H02K1/12—Stationary parts of the magnetic circuit
- H02K1/14—Stator cores with salient poles
- H02K1/146—Stator cores with salient poles consisting of a generally annular yoke with salient poles
- H02K1/148—Sectional cores
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K1/00—Details of the magnetic circuit
- H02K1/06—Details of the magnetic circuit characterised by the shape, form or construction
- H02K1/22—Rotating parts of the magnetic circuit
- H02K1/24—Rotor cores with salient poles; Variable reluctance rotors
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K21/00—Synchronous motors having permanent magnets; Synchronous generators having permanent magnets
- H02K21/12—Synchronous motors having permanent magnets; Synchronous generators having permanent magnets with stationary armatures and rotating magnets
- H02K21/14—Synchronous motors having permanent magnets; Synchronous generators having permanent magnets with stationary armatures and rotating magnets with magnets rotating within the armatures
- H02K21/16—Synchronous motors having permanent magnets; Synchronous generators having permanent magnets with stationary armatures and rotating magnets with magnets rotating within the armatures having annular armature cores with salient poles
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K1/00—Details of the magnetic circuit
- H02K1/06—Details of the magnetic circuit characterised by the shape, form or construction
- H02K1/08—Salient poles
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K3/00—Details of windings
- H02K3/04—Windings characterised by the conductor shape, form or construction, e.g. with bar conductors
- H02K3/28—Layout of windings or of connections between windings
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K3/00—Details of windings
- H02K3/04—Windings characterised by the conductor shape, form or construction, e.g. with bar conductors
- H02K3/18—Windings for salient poles
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K2213/00—Specific aspects, not otherwise provided for and not covered by codes H02K2201/00 - H02K2211/00
- H02K2213/03—Machines characterised by numerical values, ranges, mathematical expressions or similar information
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K19/00—Synchronous motors or generators
- H02K19/02—Synchronous motors
- H02K19/10—Synchronous motors for multi-phase current
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K2201/00—Specific aspects not provided for in the other groups of this subclass relating to the magnetic circuits
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K15/00—Methods or apparatus specially adapted for manufacturing, assembling, maintaining or repairing of dynamo-electric machines
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K29/00—Motors or generators having non-mechanical commutating devices, e.g. discharge tubes or semiconductor devices
- H02K29/03—Motors or generators having non-mechanical commutating devices, e.g. discharge tubes or semiconductor devices with a magnetic circuit specially adapted for avoiding torque ripples or self-starting problems
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K53/00—Alleged dynamo-electric perpetua mobilia
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K17/00—Asynchronous induction motors; Asynchronous induction generators
- H02K17/02—Asynchronous induction motors
- H02K17/16—Asynchronous induction motors having rotors with internally short-circuited windings, e.g. cage rotors
- H02K17/18—Asynchronous induction motors having rotors with internally short-circuited windings, e.g. cage rotors having double-cage or multiple-cage rotors
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Bonthu et al. | Optimal torque ripple reduction technique for outer rotor permanent magnet synchronous reluctance motors | |
Almoraya et al. | Development of a double-sided consequent pole linear vernier hybrid permanent-magnet machine for wave energy converters | |
Kim et al. | Analysis of a PM vernier motor with spoke structure | |
Zhao et al. | A novel dual-rotor, axial field, fault-tolerant flux-switching permanent magnet machine with high-torque performance | |
US8354767B2 (en) | Permanent magnet rotor with flux concentrating pole pieces | |
Madhavan et al. | Performance improvement in the axial flux-segmented rotor-switched reluctance motor | |
Vansompel et al. | Optimized design considering the mass influence of an axial flux permanent-magnet synchronous generator with concentrated pole windings | |
Patterson et al. | A comparison of radial and axial flux structures in electrical machines | |
Aydin | Magnet skew in cogging torque minimization of axial gap permanent magnet motors | |
Mahmoudi et al. | A comparison between the TORUS and AFIR axial-flux permanent-magnet machine using finite element analysis | |
Li et al. | Eddy-current calculation of solid components in fractional slot axial flux permanent magnet synchronous machines | |
Khaliq et al. | Rotor pole optimization of novel axial-flux brushless doubly fed reluctance machine for torque enhancement | |
Nasiri-Zarandi et al. | Cogging torque reduction in U-core TFPM generator using different halbach-array structures | |
Nur et al. | Novel of cogging torque reduction technique for permanent magnet generator by compounding of magnet edge shaping and dummy slotting in stator core | |
Rahman et al. | Design and analysis of neodymium free SPOKE-type motor with segmented wing shape permanent-magnet for concentrating flux density | |
Li et al. | Minimization of cogging torque in fractional-slot axial flux permanent magnet synchronous machine with conventional structure | |
AU2013279337B2 (en) | New device | |
WO2018077788A1 (en) | An axial flux switched reluctance machine and an electric vehicle comprising the machine | |
Bo et al. | A novel axial field SRM with segmental rotor: Concept, design and analysis | |
Andrada Gascón et al. | Electromagnetic evaluation of an in-wheel double rotor axial-flux switched reluctance motor for electric traction | |
Baserrah et al. | Comparison study of permanent magnet transverse flux motors (PMTFMs) for in-wheel applications | |
Shastri et al. | Design and analysis of Halbach array assisted PM brushless DC motor for ceiling fan | |
Wei et al. | Presentation of a double-stator axial-flux permanent-magnet disk motor with soft magnetic composite cores and its cogging torque reduction | |
Lee et al. | Design study of dual stator Radial Field Permanent Magnet generator for small wind turbine | |
Ren et al. | A novel technique of cogging torque reduction in mass-produced surface-mounted permanent magnet motor using tooth notching pairing |