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an investigation of dual stator winding induction machines

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where,<br />

where,<br />

− r r L<br />

= (10.18)<br />

( ωei<br />

ωri<br />

) dri<br />

ri<br />

ri mi<br />

pλqri λqri<br />

+ I qsi − − λ<br />

Lri<br />

Lri<br />

− r r L<br />

= (10.19)<br />

( ωei<br />

ωri<br />

) qri<br />

ri<br />

ri mi<br />

pλdri λdri<br />

+ I dsi + − λ<br />

Lri<br />

Lri<br />

L<br />

L<br />

r L<br />

= .<br />

2<br />

2<br />

mi<br />

σ i = Lsi<br />

−<br />

Lri<br />

<strong>an</strong>d r i rsi<br />

+<br />

ri mi<br />

2<br />

Lri<br />

The mech<strong>an</strong>ical rotor speed dynamic equation is:<br />

Ke2<br />

( λ I − λ I ) + ( λ I − I )<br />

Ke1<br />

TL<br />

pω<br />

rm = dr1<br />

qs1<br />

qr1<br />

ds1<br />

dr2<br />

qs2<br />

λqr2<br />

ds2<br />

−<br />

(10.20)<br />

J<br />

J<br />

J<br />

3P<br />

L<br />

K ⋅<br />

1 m1<br />

e1<br />

= ,<br />

4 Lr1<br />

3P<br />

L<br />

K ⋅<br />

2 m2<br />

e2<br />

= , 1<br />

4 Lr2<br />

P <strong>an</strong>d 2<br />

349<br />

P are the numbers <strong>of</strong> poles for the<br />

ABC <strong>winding</strong> set <strong>an</strong>d the XYZ <strong>winding</strong> set respectively; ω rm is the rotor mech<strong>an</strong>ical<br />

speed; the electric rotor speed <strong>of</strong> each <strong>stator</strong> <strong>winding</strong> set c<strong>an</strong> be expressed in term <strong>of</strong> rotor<br />

P1 mech<strong>an</strong>ical speed as: ωr = ⋅ω<br />

rm<br />

2<br />

P<br />

ω = ⋅ω<br />

.<br />

2<br />

2<br />

1 <strong>an</strong>d r 2<br />

rm<br />

When the rotor flux linkage is aligned with the d-axis <strong>of</strong> the synchronous reference<br />

frame, q-axis rotor flux linkage <strong>an</strong>d its derivative are zero, which c<strong>an</strong> be expressed as:<br />

λ = λ<br />

(10.21)<br />

dri<br />

ri<br />

λ pλ = 0<br />

(10.22)<br />

qri = qri<br />

Substituting (10.21-10.22) into the model equations (10.16-10.20), the simplified<br />

model equations are:<br />

ω L<br />

= (10.23)<br />

ri mi<br />

Lσi pI qsi Vqsi<br />

− ri<br />

I qsi −ω<br />

eiLσ<br />

iI<br />

dsi − λri<br />

Lri<br />

r L<br />

L pI = V r I L I λ<br />

(10.24)<br />

ri mi<br />

σi dsi dsi − i dsi + ωei σi<br />

qsi + 2<br />

Lri<br />

ri

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