Fu et al., 2022 - Google Patents
Force modeling and analysis of a tube flux-switching transverse-flux permanent magnet linear motorFu et al., 2022
- Document ID
- 3590102611338406939
- Author
- Fu D
- Wu K
- Zheng P
- Yu Q
- Wu X
- Publication year
- Publication venue
- IEEE Transactions on Industry Applications
External Links
Snippet
The permanent magnet linear motor (PMLM) has a variety of outstanding topological structures, such as flux switch structure and transverse flux structure. However, the inherited cogging force of PMLM is difficult to reduce without thrust damage. To solve the above …
- 238000004458 analytical method 0 title abstract description 27
Classifications
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K41/00—Propulsion systems in which a rigid body is moved along a path due to dynamo-electric interaction between the body and a magnetic field travelling along the path
- H02K41/02—Linear motors; Sectional motors
- H02K41/03—Synchronous motors; Motors moving step by step; Reluctance motors
- H02K41/031—Synchronous motors; Motors moving step by step; Reluctance motors of the permanent magnet type
-
- 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
-
- 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
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K41/00—Propulsion systems in which a rigid body is moved along a path due to dynamo-electric interaction between the body and a magnetic field travelling along the path
- H02K41/02—Linear motors; Sectional motors
- H02K41/025—Asynchronous motors
-
- 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
-
- 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
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K7/00—Arrangements for handling mechanical energy structurally associated with dynamo-electric machines, e.g. structural association with mechanical driving motors or auxiliary dynamo-electric machines
- H02K7/18—Structural association of electric generator with mechanical driving motor, e.g. turbine
- H02K7/1807—Rotary generators
- H02K7/1823—Rotary generators structurally associated with turbines or similar engines
-
- 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
- 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
- H02K53/00—Alleged dynamo-electric perpetua mobilia
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K16/00—Machines with more than one rotor or stator
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K19/00—Synchronous motors or generators
- H02K19/02—Synchronous motors
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K33/00—Motors with reciprocating, oscillating or vibrating magnet, armature or coil system
-
- H—ELECTRICITY
- H02—GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
- H02K—DYNAMO-ELECTRIC MACHINES
- H02K37/00—Motors with rotor rotating step by step and without interrupter or commutator driven by the rotor, e.g. stepping motors
- H02K37/10—Motors with rotor rotating step by step and without interrupter or commutator driven by the rotor, e.g. stepping motors of permanent magnet type
- H02K37/12—Motors with rotor rotating step by step and without interrupter or commutator driven by the rotor, e.g. stepping motors of permanent magnet type with stationary armatures and rotating magnets
- H02K37/14—Motors with rotor rotating step by step and without interrupter or commutator driven by the rotor, e.g. stepping motors of permanent magnet type with stationary armatures and rotating magnets with magnets rotating within the armatures
- H02K37/18—Motors with rotor rotating step by step and without interrupter or commutator driven by the rotor, e.g. stepping motors of permanent magnet type with stationary armatures and rotating magnets with magnets rotating within the armatures of homopolar type
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Huang et al. | Detent force, thrust, and normal force of the short-primary double-sided permanent magnet linear synchronous motor with slot-shift structure | |
Almoraya et al. | Development of a double-sided consequent pole linear vernier hybrid permanent-magnet machine for wave energy converters | |
Cao et al. | Influence of leading design parameters on the force performance of a complementary and modular linear flux-switching permanent-magnet motor | |
Huang et al. | Detent-force minimization of double-sided permanent magnet linear synchronous motor by shifting one of the primary components | |
Cao et al. | Investigation and general design principle of a new series of complementary and modular linear FSPM motors | |
Cao et al. | A new double-sided linear flux-switching permanent magnet motor with yokeless mover for electromagnetic launch system | |
Huang et al. | Suppressing the thrust ripple of the permanent magnet linear synchronous motors with different pole structures by setting the modular primary structures differently | |
Amara et al. | Analytical prediction of eddy-current loss in modular tubular permanent-magnet machines | |
Huang et al. | Electromagnetic and thrust characteristics of double-sided permanent magnet linear synchronous motor adopting staggering primaries structure | |
Wang et al. | Unitized design methodology of linear switched reluctance motor with segmental secondary for long rail propulsion application | |
Fu et al. | Force modeling and analysis of a tube flux-switching transverse-flux permanent magnet linear motor | |
Luo et al. | Development, design, and analysis of a dual-consequent-pole transverse flux linear machine for direct-drive applications | |
Huang et al. | Design principles of a phase-shift modular slotless tubular permanent magnet linear synchronous motor with three sectional primaries and analysis of its detent force | |
Shin et al. | Transverse-flux-type cylindrical linear synchronous motor using generic armature cores for rotary machinery | |
Shi et al. | Analysis of the fractional pole-pair linear PM vernier machine for force ripple reduction | |
Liu et al. | Analysis and evaluation of a linear primary permanent magnet vernier machine with multiharmonics | |
Huang et al. | Suppressing the thrust ripple of the consequent-pole permanent magnet linear synchronous motor by two-step design | |
CN111277092B (en) | A Stator Modular Double Rotor Alternating Pole Permanent Magnet Motor | |
Chen et al. | A stator-PM transverse flux permanent magnet linear generator for direct drive wave energy converter | |
Wang et al. | Comparative analysis of different topologies of linear switched reluctance motor with segmented secondary for vertical actuation systems | |
Chirca et al. | Analysis of innovative design variations for double-sided coreless-stator axial-flux permanent-magnet generators in micro-wind power applications | |
Chen et al. | A novel tubular switched reluctance linear launcher with a module stator | |
Raihan et al. | Development and testing of a novel cylindrical permanent magnet linear generator | |
CN105406682B (en) | A kind of plate straight line switch flux linkage motor and its side set displacement system of selection | |
Shen et al. | Investigation of novel multi-tooth linear variable flux reluctance machines |