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an investigation of dual stator winding induction machines

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g<br />

( X )<br />

( X )<br />

⎡<br />

rr1Lm1<br />

Lm1<br />

⎤<br />

⎢ − r1I<br />

qs1<br />

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ds1<br />

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λ<br />

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− ( ωe2<br />

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1<br />

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3 I<br />

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C V<br />

ds2<br />

dc<br />

The rotor mech<strong>an</strong>ical speed is ω r . For the 2-pole ABC <strong>winding</strong> set, the electric rotor<br />

speed is ω r1<br />

, the <strong>an</strong>gular frequency <strong>of</strong> the qd0 motor voltages is e1<br />

286<br />

⎤<br />

⎥<br />

⎥<br />

⎥<br />

⎥<br />

⎥<br />

⎥<br />

⎥<br />

⎥<br />

⎥<br />

⎥<br />

⎥<br />

⎥<br />

⎥<br />

⎦<br />

ω , the q-d rotor flux<br />

linkages are λ qr1<br />

<strong>an</strong>d λ dr1<br />

, respectively. The <strong>stator</strong> q <strong>an</strong>d d axis currents are I qs1<br />

<strong>an</strong>d ds1<br />

respectively. For the 6-pole XYZ <strong>winding</strong> set, the electric rotor speed is ω r2<br />

, the <strong>an</strong>gular<br />

frequency <strong>of</strong> the qd0 motor voltages is ω e2<br />

, the q-d rotor flux linkages are λ qr 2 <strong>an</strong>d dr2<br />

I ,<br />

λ ,

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