Design and modelling of a LSRM for biomedical applications | High School of Sciences and Technology of Tunis Unit Signal, Image and Intelligent Control of Industriel Systems

Mahmoud Imed

ISBN 10: 3659154490 ISBN 13: 9783659154492
Editorial: LAP Lambert Academic Publishing, 2012
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Librería: preigu, Osnabrück, Alemania Calificación del vendedor: 5 de 5 estrellas Valoración 5 estrellas, Más información sobre las valoraciones de los vendedores

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Descripción:

Design and modelling of a LSRM for biomedical applications | High School of Sciences and Technology of Tunis Unit Signal, Image and Intelligent Control of Industriel Systems | Mahmoud Imed | Taschenbuch | Englisch | LAP Lambert Academic Publishing | EAN 9783659154492 | Verantwortliche Person für die EU: preigu GmbH & Co. KG, Lengericher Landstr. 19, 49078 Osnabrück, mail[at]preigu[dot]de | Anbieter: preigu. N° de ref. del artículo 106417930

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Sinopsis:

The present paper deals with a design of a linear stepper motor for biomedical applications. The involved biomedical system is a syringe pump generally used for continuous drug infusion. The syringe pump consists of a linear switched reluctance motor (LSRM) coupled to a syringe plunger. In order to determine the axial force to control the syringe plunger, it was necessary to begin by evaluating the thrust force. The latter constituted the key element for designing the motor. Based on the concept of energy balance, a simplified analytical model was developed to predict the electromagnetic characteristics of the linear switched reluctance motor. The validity of results was ensured by direct comparison with the finite element method (FEM).

Reseña del editor: The present paper deals with a design of a linear stepper motor for biomedical applications. The involved biomedical system is a syringe pump generally used for continuous drug infusion. The syringe pump consists of a linear switched reluctance motor (LSRM) coupled to a syringe plunger. In order to determine the axial force to control the syringe plunger, it was necessary to begin by evaluating the thrust force. The latter constituted the key element for designing the motor. Based on the concept of energy balance, a simplified analytical model was developed to predict the electromagnetic characteristics of the linear switched reluctance motor. The validity of results was ensured by direct comparison with the finite element method (FEM).

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Detalles bibliográficos

Título: Design and modelling of a LSRM for ...
Editorial: LAP Lambert Academic Publishing
Año de publicación: 2012
Encuadernación: Taschenbuch
Condición: Neu

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