27.02.2013 Views

an investigation of dual stator winding induction machines

an investigation of dual stator winding induction machines

an investigation of dual stator winding induction machines

SHOW MORE
SHOW LESS

Create successful ePaper yourself

Turn your PDF publications into a flip-book with our unique Google optimized e-Paper software.

The influences <strong>of</strong> the saturation <strong>of</strong> the magnetizing flux linkage <strong>an</strong>d the ratio <strong>of</strong> each<br />

rectifier dc voltage with respect to the total dc voltage on generator perform<strong>an</strong>ce are<br />

considered. The relationship between the output rectifier dc voltage <strong>of</strong> the ABC <strong>winding</strong><br />

set <strong>an</strong>d the total output dc voltage is Vdc1 = γ ⋅Vdc<br />

, where γ r<strong>an</strong>ges between 0 <strong>an</strong>d 1. The<br />

modulation magnitudes <strong>of</strong> the rectifiers (M1, M2) are given as:<br />

M<br />

M<br />

where,<br />

i<br />

2<br />

1<br />

2<br />

2<br />

si<br />

− 4 ⎛ 1<br />

= ⎜<br />

3 ⎝ RL<br />

− 4 ⎛ 1<br />

=<br />

⎜<br />

3 ⎝ RL<br />

ri<br />

A<br />

r<br />

2<br />

1<br />

L<br />

1<br />

+<br />

γ ⋅ R<br />

+<br />

si ri<br />

si = ,<br />

Lδ<br />

i<br />

2<br />

mi<br />

L3<br />

1<br />

R<br />

( 1−<br />

γ )<br />

A<br />

D = L L − L , i = 1 or 2 .<br />

⎞<br />

⎟<br />

⎠<br />

L3<br />

⎞<br />

⎟<br />

⎠<br />

r<br />

ri si<br />

ri = ,<br />

Lδ<br />

i<br />

⎧ ⎡ L<br />

⎤ ⎫<br />

r1<br />

Lm1Ar<br />

1<br />

⎪ ⎢ −<br />

⎥ ⎪<br />

⎪ ⎣ D1<br />

D1(<br />

Br1<br />

− jωs1<br />

) ⎦ ⎪<br />

Re⎨<br />

⎬<br />

⎪⎡<br />

A<br />

⎤<br />

s1Ar<br />

1 ⎪<br />

⎪⎢C<br />

s1<br />

− − jωe1⎥<br />

⎪<br />

⎩⎣<br />

Br1<br />

− jωs1<br />

⎦ ⎭<br />

L<br />

⎧ ⎡ L<br />

⎤ ⎫<br />

r2<br />

Lm2<br />

Ar<br />

2<br />

⎪ ⎢ −<br />

⎥ ⎪<br />

⎪ ⎣ D2<br />

D2<br />

( Br<br />

2 − jωs2<br />

) ⎦ ⎪<br />

Re⎨<br />

⎬<br />

⎪⎡<br />

A<br />

⎤<br />

s1Ar<br />

1 ⎪<br />

⎪⎢C<br />

s2<br />

− − jωe2<br />

⎥ ⎪<br />

⎩⎣<br />

Br<br />

2 − jωs2<br />

⎦ ⎭<br />

B<br />

i mi<br />

si = ,<br />

Lδ<br />

i<br />

323<br />

− r L<br />

B<br />

− r<br />

L<br />

ri mi<br />

ri = ,<br />

Lδ<br />

i<br />

(9.23)<br />

(9.24)<br />

r<br />

L<br />

si ri C si = ,<br />

D i<br />

The <strong>stator</strong> current is expressed in complex variable form in term <strong>of</strong> <strong>stator</strong> flux<br />

linkages as:<br />

⎛ L<br />

= ⎜<br />

L A ⎞<br />

(9.25)<br />

⎝<br />

⎠<br />

ri mi ri<br />

I qdsi<br />

λqdsi<br />

Di<br />

Di<br />

Bri<br />

jωsi<br />

⎟⎟<br />

⎜<br />

+<br />

−<br />

The magnetizing flux linkage is expressed in terms <strong>of</strong> <strong>stator</strong> flux linkages as:<br />

L ⎛<br />

A ⎞<br />

= ⎜<br />

λqdsi<br />

(9.26)<br />

⎝<br />

⎠<br />

mi<br />

ri<br />

λqdmi Llri<br />

Llsi<br />

Di<br />

Bri<br />

jω<br />

⎟<br />

si<br />

⎟<br />

⎜<br />

+<br />

−<br />

The total dc voltage equation now expressed in terms <strong>of</strong> the variables <strong>of</strong> the ABC<br />

<strong>winding</strong> set becomes:

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!