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.

l<br />

cs<br />

( D − d )<br />

os =<br />

P<br />

= 0.<br />

301 m<br />

π<br />

cs<br />

The corresponding MMF drop in the <strong>stator</strong> core is given as:<br />

Fcs = H cs(<br />

ave)<br />

lcs<br />

( ave)<br />

=<br />

62.<br />

67<br />

At<br />

D) MMF <strong>of</strong> rotor core F cr<br />

62<br />

(2.46)<br />

(2.47)<br />

If the leakage flux has been neglected, the flux per pole in the rotor core is the same<br />

as in the <strong>stator</strong> core.<br />

are:<br />

φ<br />

cr<br />

= 0.<br />

58<br />

mWb<br />

Then, the peak fundamental component <strong>of</strong> flux density in the core is,<br />

B<br />

cr<br />

φcr<br />

o ( ) = 90 dcrk<br />

irl<br />

= 0.<br />

56 T<br />

r<br />

(2.48)<br />

The corresponding values <strong>of</strong> core flux density points 30 o <strong>an</strong>d 60 o from the maximum<br />

3<br />

o ( ) = B<br />

60<br />

cr(<br />

90 2 )<br />

= 0.<br />

48 T<br />

B o<br />

cr<br />

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

1<br />

o ( ) = B<br />

30<br />

cr ( 90 2 )<br />

= 0.<br />

28 T<br />

B o<br />

cr<br />

(2.49)<br />

(2.50)<br />

Assume the B-H characteristic <strong>of</strong> 3% silicon steel is linear, the average field intensity<br />

along the <strong>stator</strong> core is given as:

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

Saved successfully!

Ooh no, something went wrong!