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Interior permanent magnet synchronous motors (IPMSMs) are receiving increased attention for high performance drive applications because of their high power density, high efficiency and flux weakening capability. However, their high efficiency characteristic is influenced by applied control strategies. Thus much effort has been directed towards the efficiency optimization of the IPMSM by minimizing motor copper loss .This loss is influenced by machine parameters.
An induction motor or asynchronous motor is an AC electric motor in which the electric current in the rotor needed to produce torque is obtained by electromagnetic induction from the magnetic field of the stator winding. An induction motor can therefore be made without electrical connections to the rotor.
The Synchronous reluctance motor (SynRM) has become commercially viable as a high efficiency alternative to the induction motor in recent years. The core idea of a SynRM motor is that the rotor has no windings or magnets, just electric steel plates stacked together to form a rotor package.