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Electromechanical Characteristics Analysis of Magnetic Shield on Superconducting Magnetic Levitation Train
by
Hu, Mingyuan
, Zhang, Lei
, Tao, Ran
, Wang, Ping
in
Coils
/ Cooling
/ Decomposition
/ Density distribution
/ Electromagnetism
/ Electron microscopes
/ Flux density
/ Helium
/ High speed
/ High speed trains
/ Lagrange multiplier
/ Lagrangian function
/ Leakage
/ Magnetic fields
/ Magnetic flux
/ magnetic flux density
/ Magnetic levitation
/ Magnetic levitation systems
/ magnetic shield
/ Magnetic shielding
/ Optimization
/ Permeability
/ superconducting maglev system
/ Superconductivity
/ Superconductors
2025
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Electromechanical Characteristics Analysis of Magnetic Shield on Superconducting Magnetic Levitation Train
by
Hu, Mingyuan
, Zhang, Lei
, Tao, Ran
, Wang, Ping
in
Coils
/ Cooling
/ Decomposition
/ Density distribution
/ Electromagnetism
/ Electron microscopes
/ Flux density
/ Helium
/ High speed
/ High speed trains
/ Lagrange multiplier
/ Lagrangian function
/ Leakage
/ Magnetic fields
/ Magnetic flux
/ magnetic flux density
/ Magnetic levitation
/ Magnetic levitation systems
/ magnetic shield
/ Magnetic shielding
/ Optimization
/ Permeability
/ superconducting maglev system
/ Superconductivity
/ Superconductors
2025
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Electromechanical Characteristics Analysis of Magnetic Shield on Superconducting Magnetic Levitation Train
by
Hu, Mingyuan
, Zhang, Lei
, Tao, Ran
, Wang, Ping
in
Coils
/ Cooling
/ Decomposition
/ Density distribution
/ Electromagnetism
/ Electron microscopes
/ Flux density
/ Helium
/ High speed
/ High speed trains
/ Lagrange multiplier
/ Lagrangian function
/ Leakage
/ Magnetic fields
/ Magnetic flux
/ magnetic flux density
/ Magnetic levitation
/ Magnetic levitation systems
/ magnetic shield
/ Magnetic shielding
/ Optimization
/ Permeability
/ superconducting maglev system
/ Superconductivity
/ Superconductors
2025
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Electromechanical Characteristics Analysis of Magnetic Shield on Superconducting Magnetic Levitation Train
Journal Article
Electromechanical Characteristics Analysis of Magnetic Shield on Superconducting Magnetic Levitation Train
2025
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Overview
The guest room and aisle of electric high-speed maglev train must be shielded from leakage magnetic flux produced by superconducting strong magnetic field. To reduce magnetic leakage, the superconducting magnetic levitation system structure is obtained by extended lagrangian optimization method. The optimized superconducting coil structure has the advantages of reducing magnetic leakage, improving magnetic field utilization, reducing the weight of the magnetic isolation plate and the weight of the maglev train, and enhancing the load-bearing capacity of the maglev train. Based on optimized superconducting coil parameters for high-speed maglev, the magnetic shielding effect at the aisle and the guest room, the magnetic flux density distribution at the magnetic shielding is calculated and analyzed through analytical calculation. The relevant conclusions indicate that the magnetic suspension structure has the advantages of reducing end coil leakage flux and the weight of the high-speed maglev train.
Publisher
MDPI AG,Multidisciplinary Digital Publishing Institute (MDPI)
Subject
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