Title :
Design-oriented analytical study of a linear electromagnetic actuator by means of a reluctance network
Author :
Chillet, Christian ; Voyant, Jean-Yves
Author_Institution :
Lab. d´´Electrotechnique de Grenoble, Domaine Univ., France
fDate :
7/1/2001 12:00:00 AM
Abstract :
This paper presents an analytical electromagnetic model of a rectilinear actuator. The model is based on a reluctance network, which can be solved with the same techniques as for an electric circuit. The analytical model was originally built to be used with an algorithm of geometric optimization for design purposes. The authors first show the way in which leakage flux are taken into account. They then describe the innovative method they have developed for the reluctance evaluation of different parts of the actuator. The method considers magnetic saturation and flux routes in remarkable cylindrical geometries. The authors also describe an equivalent model of the air gap, which gives the values of force applied on the moving part and the corresponding reluctance value of the air gap. An evaluation of the model accuracy by comparison with a numeric determination (finite elements) makes it possible to carry out further optimizations of the rectilinear actuator. Finally, the authors interpret the model deviations, and they suggest corresponding improvements of the analytical model
Keywords :
electromagnetic actuators; magnetic circuits; magnetic leakage; air gap; analytical model; design optimization algorithm; leakage flux; linear electromagnetic actuator; magnetic equivalent circuit; magnetic saturation; reluctance network; Actuators; Algorithm design and analysis; Analytical models; Circuits; Design optimization; Electromagnetic analysis; Electromagnetic modeling; Geometry; Magnetic flux; Saturation magnetization;
Journal_Title :
Magnetics, IEEE Transactions on