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an investigation of dual stator winding induction machines

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−1<br />

−1<br />

−1<br />

where, λ qdr = Tr<br />

LrrTr<br />

iqdr<br />

+ Tr<br />

Lrs1Tabciqds1<br />

+ Tr<br />

Lrs2Txyziqds2<br />

Finally the equation for the electromagnetic torque expressed in terms <strong>of</strong> the<br />

tr<strong>an</strong>sformed variables is :<br />

−1<br />

T ∂L<br />

⎤<br />

T ⎡<br />

s r<br />

T L ⎤<br />

1 −1<br />

−1<br />

∂ s2<br />

r −1<br />

( Tabc<br />

) Tr<br />

⋅iqdr<br />

− iqds<br />

⋅ ( Txyz<br />

) Tr<br />

iqdr<br />

T ⎡<br />

Te = −iqds1<br />

⋅ ⎢<br />

⎥<br />

2 ⎢<br />

⎥ ⋅<br />

⎣ ∂θ<br />

rm ⎦<br />

⎣ ∂θ<br />

rm ⎦<br />

3.9 Simulation Results<br />

121<br />

(3.91)<br />

The <strong>dual</strong> <strong>stator</strong> <strong>winding</strong> <strong>induction</strong> machine is treated as two independent <strong>machines</strong><br />

coupled by the rotor shaft with only the fundamental component considered. The system<br />

c<strong>an</strong> be simulated using MATLAB/SIMULINK. All the induct<strong>an</strong>ces except the leakage<br />

induct<strong>an</strong>ces are calculated on-line.<br />

In the first case, both <strong>of</strong> the <strong>winding</strong>s are working as motors. Some <strong>of</strong> the system<br />

parameters used for the simulation are listed in Table 3.1.<br />

Table 3.1 Designed machine parameters<br />

ABC <strong>winding</strong> XYZ <strong>winding</strong><br />

Number <strong>of</strong> pole 2 6<br />

Stator resist<strong>an</strong>ce ( Ω ) 0.5 0.3<br />

Number <strong>of</strong> coils per slot 36 71<br />

Stator leakage induct<strong>an</strong>ce (H) 0.013 0.009<br />

Rotor bar resist<strong>an</strong>ce ( Ω )<br />

Rotor bar induct<strong>an</strong>ce (H)<br />

End ring segment resist<strong>an</strong>ce ( Ω )<br />

End ring segment induct<strong>an</strong>ce (H)<br />

1.<br />

45×<br />

10<br />

−5<br />

4.<br />

57 × 10<br />

1.<br />

0×<br />

10<br />

9.<br />

6×<br />

10<br />

−8<br />

−6<br />

−9

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