A middle-low-speed maglev train is supported by an electromagnetic force between the suspension electromagnet (EM) and the steel rail and is driven by a linear induction motor. The capability of the suspension system has a direct bearing on safety and the technical and economic performance of the train. This paper focuses on the dependence of the electromagnetic force on the structural configuration of the EM with the purpose of improving performance of a conventional EM. Finally, a novel configuration is proposed of a hybrid suspension magnet, which combines permanent magnets and coils, in order to increase the suspension force while reducing the suspension power loss
In high-speed magnetic railways, it is necessary to create the forces that lift the train. This effe...
In the 1990s, significant experience has been gained with high-speed passenger rail technologies. On...
Purpose. Traction force implementation (TFI) by the motor of magnetic levitation train (MLT) occurs ...
A middle-low-speed maglev train is supported by an electromagnetic force between the suspension elec...
The suspension force − a critical factor in the operation of middle-low-speed maglev trains − is pro...
The suspension force − a critical factor in the operation of middle-low-speed maglev trains − is pro...
Attracting ferromagnetic forces between magnet and reaction rail provide the supporting force in Ele...
In order to solve the problem of hybrid electromagnet lock orbit, we design a new type of AlNiCo-NdF...
In order to solve the problem of hybrid electromagnet lock orbit, we design a new type of AlNiCo-NdF...
In order to solve the problem of hybrid electromagnet lock orbit, we design a new type of AlNiCo-NdF...
The given paper presents a hybrid electromagnetic suspension designed for high-speed vacuum transpor...
In many applications, magnetic suspension systems are required to operate over large variations in a...
In many applications, magnetic suspension systems are required to operate over large variations in a...
The Grumman developed Electromagnetic Suspension (EMS) Maglev system has the following key character...
The magnetic levitation (MAGLEV) train uses magnetic field to suspend, guide, and propel vehicle ont...
In high-speed magnetic railways, it is necessary to create the forces that lift the train. This effe...
In the 1990s, significant experience has been gained with high-speed passenger rail technologies. On...
Purpose. Traction force implementation (TFI) by the motor of magnetic levitation train (MLT) occurs ...
A middle-low-speed maglev train is supported by an electromagnetic force between the suspension elec...
The suspension force − a critical factor in the operation of middle-low-speed maglev trains − is pro...
The suspension force − a critical factor in the operation of middle-low-speed maglev trains − is pro...
Attracting ferromagnetic forces between magnet and reaction rail provide the supporting force in Ele...
In order to solve the problem of hybrid electromagnet lock orbit, we design a new type of AlNiCo-NdF...
In order to solve the problem of hybrid electromagnet lock orbit, we design a new type of AlNiCo-NdF...
In order to solve the problem of hybrid electromagnet lock orbit, we design a new type of AlNiCo-NdF...
The given paper presents a hybrid electromagnetic suspension designed for high-speed vacuum transpor...
In many applications, magnetic suspension systems are required to operate over large variations in a...
In many applications, magnetic suspension systems are required to operate over large variations in a...
The Grumman developed Electromagnetic Suspension (EMS) Maglev system has the following key character...
The magnetic levitation (MAGLEV) train uses magnetic field to suspend, guide, and propel vehicle ont...
In high-speed magnetic railways, it is necessary to create the forces that lift the train. This effe...
In the 1990s, significant experience has been gained with high-speed passenger rail technologies. On...
Purpose. Traction force implementation (TFI) by the motor of magnetic levitation train (MLT) occurs ...