DocumentCode :
1583723
Title :
Some aspects of rail and actuator used in electromagnetic lévitation systems — An Ansys based simulation study
Author :
Baneqee, S. ; Biswas, P. ; Bhaduri, R.
Author_Institution :
Dept. of Electr. Eng., NIT, Durgapur, India
fYear :
2010
Firstpage :
1
Lastpage :
6
Abstract :
In this work FEM based analysis and design of different structure of rail (guide-way) and electromagnetic lévitation system (EMLS) has been performed utilizing ANSYS software. Actuator and guide-way are the most important part for magnetic lévitation system. Input power to lift power ratio and lift power magnet weight ratio are two major factors for designing actuator and rail in EMLS. These factors are dependent on the magnet dimensions, required gap flux and hence the required current density in the winding The magnet configurations chosen on the basis of required pole-face area and necessary window area to house the excitation coils. There are various magnet and rail geometries; i.e. magnet with I, U and E profiles and various winding arrangements with flat and U-profile rail. A FEM analysis utilizing ANSYS software has done to find out the flux pattern, working flux density, field intensity, force etc. for different single actuator based lévitation system at different operating conditions. Different aspects of rail and actuator have been described based on the ANSYS simulation results. The main objective is to propose a suitable configuration of actuator and guide-rail for a specific DC electromagnetic lévitation system. The effect of different lévitation parameters like size of actuator and rail, current density, no of turns of coil, permeability of magnetic material, winding dimension etc. has been studied and will be included in the final version of the manuscript.
Keywords :
current density; electromagnetic actuators; finite element analysis; magnetic flux; magnetic levitation; magnetic materials; railway electrification; ANSYS based simulation study; ANSYS software; DC electromagnetic levitation system; EMLS; FEM based analysis; U-profile rail structure design; current density; gap flux density; magnet dimension; magnetic material; magnetic winding; pole face area; power magnet weight ratio; rail geometry; Three dimensional displays;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electrical Systems for Aircraft, Railway and Ship Propulsion (ESARS), 2010
Conference_Location :
Bologna
Print_ISBN :
978-1-4244-9092-9
Type :
conf
DOI :
10.1109/ESARS.2010.5665199
Filename :
5665199
Link To Document :
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