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an investigation of dual stator winding induction machines

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Figure 3.53 Normalized spectrum <strong>of</strong> the total air gap flux density including saturation effect<br />

3.11 Conclusions<br />

The simulation model <strong>of</strong> the <strong>dual</strong> <strong>stator</strong> <strong>winding</strong> <strong>induction</strong> machine in which the<br />

space harmonics <strong>of</strong> the <strong>stator</strong> <strong>winding</strong>s <strong>an</strong>d those <strong>of</strong> the rotor circuits are accounted has<br />

been presented. The complications involved with the definition <strong>of</strong> the <strong>winding</strong> function<br />

when the air gap length is not const<strong>an</strong>t have been highlighted. The method is used to<br />

calculate the self <strong>an</strong>d mutual induct<strong>an</strong>ces in the <strong>stator</strong> <strong>winding</strong>s, the rotor circuits <strong>an</strong>d the<br />

mutual induct<strong>an</strong>ces between the <strong>stator</strong> <strong>winding</strong>s <strong>an</strong>d the rotor circuits. The phase voltage<br />

<strong>an</strong>d torque equations thus obtained are further tr<strong>an</strong>sformed to the rotor reference frame to<br />

facilitate simplicity <strong>of</strong> model <strong>an</strong>d ease computational efforts. If it is desirable to include<br />

the effects <strong>of</strong> the space harmonics in the <strong>stator</strong> <strong>winding</strong>s <strong>an</strong>d in the rotor bars, <strong>an</strong> n x n<br />

151

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