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an investigation of dual stator winding induction machines

an investigation of dual stator winding induction machines

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The field <strong>an</strong>alysis method has been applied to the <strong>dual</strong> <strong>stator</strong> <strong>winding</strong> <strong>induction</strong><br />

machine. The adv<strong>an</strong>tage <strong>of</strong> this method is the ability to clearly show all the frequency<br />

components <strong>an</strong>d the corresponding magnitudes <strong>of</strong> induced voltages, unsaturated air-gap<br />

flux linkages <strong>an</strong>d components <strong>of</strong> the developed electromagnetic torque. It may be<br />

possible to use some <strong>of</strong> these induced voltages <strong>an</strong>d air-gap flux linkages by virtue <strong>of</strong> their<br />

dependencies on the rotor speed to estimate the rotor speeds (from zero to high speed) for<br />

a sensorless speed <strong>an</strong>d/or torque control. This possibility is a subject <strong>of</strong> future research<br />

<strong>an</strong>d experimentation.<br />

The field <strong>an</strong>alysis approach <strong>an</strong>d coupled-circuit model simulation method are<br />

powerful <strong>an</strong>alysis tools for electric <strong>machines</strong> <strong>an</strong>d the same methodology <strong>an</strong>d derivation<br />

steps c<strong>an</strong> be applied to the <strong>an</strong>alysis <strong>of</strong> other electric <strong>machines</strong>.<br />

When the <strong>dual</strong> <strong>stator</strong> <strong>winding</strong> <strong>induction</strong> machine system is desired to be fault-<br />

toler<strong>an</strong>t, a new control algorithm that enables the machine to deliver the best perform<strong>an</strong>ce<br />

under various fault conditions must be implemented. This is a possible area <strong>of</strong> future<br />

research. The objectives <strong>of</strong> the control algorithm must also include the protection <strong>of</strong> the<br />

system from further damage.<br />

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