Keyphrases
Performance Evaluation
100%
Low Speed
100%
High-temperature Superconductivity
100%
Linear Induction Motor
100%
Single-side
100%
Subway System
100%
Magnetic Flux pinning
66%
Pinning Phenomena
66%
Electrical Conductivity
33%
Eddy Current Loss
33%
Magnetic Flux Density
33%
Leakage Flux
33%
Power Factor
33%
Efficiency Loss
33%
Performance Parameters
33%
Electromagnetic Calculation
33%
Time Stepping Finite Element Method (TSFEM)
33%
Flux Density Distribution
33%
2D Mathematical Model
33%
High Temperature Superconducting Motor
33%
Equivalent Magnetic Permeability
33%
High Temperature Superconducting Materials
33%
Superconducting Winding
33%
Vertical Force
33%
Engineering
Induction Motor
100%
Magnetic Flux
100%
Subways
100%
Mathematical Model
33%
Finite Element Method
33%
Boundary Condition
33%
Electrical Conductivity
33%
Eddy Current Loss
33%
Magnetic Flux Density
33%
Power Factor
33%
Flux Density
33%
Density Distribution
33%
Performance Parameter
33%
Magnetic Permeability
33%
Physics
Magnetic Flux
100%
Flux Density
50%
Flux Pinning
50%
Finite Element Method
25%
Boundary Condition
25%
Mathematical Model
25%
Electromagnetic
25%
Magnetic Permeability
25%
Critical Current
25%
Density Distribution
25%
Eddy Current
25%
Material Science
Density
100%
Flux Pinning
100%
Finite Element Method
50%
Electrical Conductivity
50%
Superconducting Material
50%