The finite reluctance approach is very well suited for fast modeling and dynamic simulation of permanent magnet synchronous machines with inverter feeding. This paper shows validating simulations, in both steady-state and transient conditions, carried out for a permanent magnet linear motor designed for on board ship load actuation. The basics of the method are resumed. The simulations obtained by using the finite reluctance approach are compared with FEM simulations, showing good agreement.

Validation of a magnetic network-based dynamic model of permanent magnet linear synchronous machine built by finite reluctance approach

TESSAROLO, ALBERTO
2014-01-01

Abstract

The finite reluctance approach is very well suited for fast modeling and dynamic simulation of permanent magnet synchronous machines with inverter feeding. This paper shows validating simulations, in both steady-state and transient conditions, carried out for a permanent magnet linear motor designed for on board ship load actuation. The basics of the method are resumed. The simulations obtained by using the finite reluctance approach are compared with FEM simulations, showing good agreement.
2014
978-1-4799-4389-0
978-1-4799-4389-0
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11368/2829452
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