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an investigation of dual stator winding induction machines

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Substituting (6.7) into (6.4-6.6), the voltage equations become:<br />

r L r L<br />

= (6.8)<br />

si ri<br />

si mi<br />

Vqdsi λqdsi − λqdri<br />

+ pλqdsi<br />

− jωλqdsi<br />

Di<br />

Di<br />

r L r L<br />

0 = λ −<br />

(6.9)<br />

ri si<br />

ri mi<br />

qdri − λqdsi<br />

+ pλqdri<br />

− j<br />

Di<br />

Di<br />

( ω ωri<br />

) λqdri<br />

The developed electromagnetic torque equation for each <strong>stator</strong> <strong>winding</strong> c<strong>an</strong> be written<br />

in complex variable form as:<br />

* ( i )<br />

3 Pi<br />

Tei = Im λqdsi<br />

qdsi<br />

(6.10)<br />

2 2<br />

Hence, the total electromagnetic torque <strong>of</strong> the <strong>dual</strong>-<strong>stator</strong> <strong>winding</strong> <strong>induction</strong> machine<br />

is the sum <strong>of</strong> the torques due to both <strong>stator</strong> <strong>winding</strong>s, which is given as:<br />

* 3 P2<br />

*<br />

( λ i ) + Im(<br />

i )<br />

3 P<br />

= (6.11)<br />

2 2<br />

2 2<br />

1<br />

Te Te1<br />

+ Te2<br />

= Im qds1<br />

qds1<br />

λqds2<br />

qds2<br />

The air gap flux linkage c<strong>an</strong> be expressed as:<br />

λ = L i + L i<br />

(6.12)<br />

qdmi<br />

mi qdsi<br />

mi<br />

qdri<br />

Substituting (6.7) into (6.12) to eliminate the currents, the air gap flux linkage <strong>of</strong> each<br />

<strong>stator</strong> <strong>winding</strong> c<strong>an</strong> be expressed in terms <strong>of</strong> the <strong>stator</strong> <strong>an</strong>d rotor flux linkages as:<br />

L L L<br />

λ +<br />

L<br />

lri mi<br />

lsi mi<br />

qdmi = λqdsi<br />

λqdri<br />

(6.13)<br />

Di<br />

Di<br />

The total unsaturated air gap flux linkage is the sum <strong>of</strong> the two separate air-gap flux<br />

linkages which is expressed as:<br />

L L L L L L L<br />

λ λ<br />

λ<br />

λ +<br />

lr1<br />

m1<br />

ls1<br />

m1<br />

lr 2i<br />

m2<br />

ls2<br />

m2<br />

qdm = qds1<br />

+<br />

qdr1<br />

+<br />

qds2<br />

qdr 2<br />

(6.14)<br />

D1<br />

D1<br />

D2<br />

D2<br />

245<br />

L<br />

λ

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