The paper presents a method for evaluating and optimizing the design of an electromagnetic current-sensitive actuator, using a three dimensional CAD finite element package. The analysis enables the relationship of the actuator sensitivity to manufacturing tolerance, sinusoidal current and a wide range of design and control variables to be examined. The actuator sensitivity is quantified in terms of critical design factors for four practical actuators and a range of airgap settings. The results of all the studies correlated closely with the results from test and measurements.
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ESCUELA TECN SUPER INGN IND & INGN TELECOMUN,DEPT MATEMAT APLICADA,E-48013 BILBAO,SPAINESCUELA TECN SUPER INGN IND & INGN TELECOMUN,DEPT MATEMAT APLICADA,E-48013 BILBAO,SPAIN
AMEZUA, E
HORMAZA, MV
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ESCUELA TECN SUPER INGN IND & INGN TELECOMUN,DEPT MATEMAT APLICADA,E-48013 BILBAO,SPAINESCUELA TECN SUPER INGN IND & INGN TELECOMUN,DEPT MATEMAT APLICADA,E-48013 BILBAO,SPAIN
HORMAZA, MV
HERNANDEZ, A
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ESCUELA TECN SUPER INGN IND & INGN TELECOMUN,DEPT MATEMAT APLICADA,E-48013 BILBAO,SPAINESCUELA TECN SUPER INGN IND & INGN TELECOMUN,DEPT MATEMAT APLICADA,E-48013 BILBAO,SPAIN
HERNANDEZ, A
AJURIA, MBG
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ESCUELA TECN SUPER INGN IND & INGN TELECOMUN,DEPT MATEMAT APLICADA,E-48013 BILBAO,SPAINESCUELA TECN SUPER INGN IND & INGN TELECOMUN,DEPT MATEMAT APLICADA,E-48013 BILBAO,SPAIN