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an investigation of dual stator winding induction machines

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L<br />

pλ + λ = I −<br />

= σ<br />

(8.3)<br />

( ω 1 −ω<br />

1)<br />

λ 1 1<br />

r1<br />

r1<br />

m1<br />

qr1<br />

Lr1<br />

qr1<br />

Lr1<br />

qs1<br />

e r dr qr<br />

r r L<br />

pλ + λ = I +<br />

= σ<br />

(8.4)<br />

( ωe1<br />

−ω<br />

r1)<br />

λqr1<br />

1<br />

r1<br />

r1<br />

m1<br />

dr1<br />

Lr1<br />

dr1<br />

Lr1<br />

ds1<br />

dr<br />

r L<br />

L<br />

L + σ (8.5)<br />

r 2 m2<br />

m2<br />

σ 2 pI qs2<br />

r2<br />

I qs2<br />

= Vqs2<br />

−ω<br />

e2L<br />

σ 2I<br />

ds2<br />

+ λ 2 qr 2 −ω<br />

r 2 λdr<br />

2 = qs2<br />

Lr<br />

2<br />

Lr<br />

2<br />

r L L<br />

L + σ<br />

(8.6)<br />

r2<br />

m2<br />

m2<br />

σ 2 pIds2<br />

r2I<br />

ds2<br />

= Vds2<br />

+ ωe2Lσ 2I<br />

qs2<br />

+ λ 2 dr2<br />

+ ωr2<br />

λqr2<br />

= ds2<br />

Lr<br />

2 Lr<br />

2<br />

r r L<br />

pλ + λ = I −<br />

= σ<br />

(8.7)<br />

( ω 2 −ω<br />

2 ) λ 2 2<br />

r 2<br />

r 2 m2<br />

qr 2<br />

Lr<br />

2<br />

qr 2<br />

Lr<br />

2<br />

qs2<br />

e r dr qr<br />

r r L<br />

pλ + λ = I +<br />

= σ<br />

(8.8)<br />

( ω 2 −ω<br />

2 ) λ 2 2<br />

r1<br />

r 2 m2<br />

dr 2<br />

Lr1<br />

dr 2<br />

Lr<br />

2<br />

ds2<br />

e r qr dr<br />

( M I + M I + M I + M I )<br />

3<br />

V<br />

CpVdc = − qs1<br />

qs1<br />

ds1<br />

ds1<br />

qs 2 qs 2 ds 2 ds 2 −<br />

2<br />

R<br />

2<br />

L<br />

where L 1 = Ls1<br />

−<br />

L<br />

2<br />

s2<br />

r L<br />

= , M<br />

σ<br />

m1<br />

, r 1<br />

r1<br />

rs1<br />

+<br />

2<br />

r1<br />

m1<br />

2<br />

Lr1<br />

r L<br />

r = r + , M<br />

2<br />

r 2 m2<br />

2<br />

Lr<br />

2<br />

qs 2<br />

Vqs<br />

2<br />

= 2 , M<br />

V<br />

dc<br />

qs1<br />

V<br />

Vqs1<br />

= 2 , M<br />

V<br />

ω<br />

285<br />

dc<br />

p ω<br />

V<br />

dc<br />

L<br />

ds1<br />

ds1<br />

= 2 ,<br />

Vdc<br />

ω<br />

q ω<br />

ds2<br />

ds2<br />

= 2 , r1<br />

r<br />

Vdc<br />

2<br />

= , r2<br />

r<br />

2<br />

=<br />

The above model equations c<strong>an</strong> be rewritten in matrix form as;<br />

( X ) + g(<br />

X ) u<br />

L<br />

Lσ 2 = Ls<br />

2 −<br />

L<br />

2<br />

m2<br />

r 2<br />

(8.9)<br />

X& = f ⋅<br />

(8.10)<br />

where, the state variable vector is X , the system input vector is u , ( X )<br />

f .<strong>an</strong>d ( X )<br />

,<br />

g are<br />

the functions in terms <strong>of</strong> machine parameters, input frequencies <strong>an</strong>d rotor electric speeds.<br />

The expressions <strong>of</strong> those vectors <strong>an</strong>d functions are given as:<br />

[ i i λ λ i i λ λ V ]<br />

X = qs1<br />

ds1<br />

qr1<br />

dr1<br />

qs2<br />

ds2<br />

qr 2 dr 2<br />

u =<br />

[ V V V V ]<br />

qs1<br />

ds1<br />

qs2<br />

ds1<br />

dc

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