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an investigation of dual stator winding induction machines

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The length <strong>of</strong> the rotor bar takes into account the slight additional length <strong>of</strong> the bar<br />

due to skew:<br />

is:<br />

l<br />

er<br />

le<br />

= = 0.<br />

059<br />

⎛ 2π<br />

⎞<br />

cos⎜<br />

⎟<br />

⎝ S ⎠<br />

m<br />

Then the slot leakage per bar is:<br />

2<br />

Lb = nr<br />

ler<br />

psl<br />

= 0.<br />

0457×<br />

10<br />

−6<br />

H / bar<br />

2.3.3.2 Rotor end <strong>winding</strong> induct<strong>an</strong>ce per bar<br />

The end <strong>winding</strong> leakage induct<strong>an</strong>ce per segment <strong>of</strong> the end ring is obtained as:<br />

( l k )<br />

72<br />

(2.81)<br />

(2.82)<br />

⎛ 4 ⎞<br />

Le = µ 0⎜ ⎟ be + τ pr(<br />

ave)<br />

(2.83)<br />

⎝ 9 ⎠<br />

The length <strong>of</strong> the bar extension from the surface <strong>of</strong> the core to the start <strong>of</strong> the end ring<br />

l be<br />

= 0.<br />

003<br />

m<br />

The rotor pole pitch measured at the middle <strong>of</strong> the end ring is:<br />

τ<br />

pr(<br />

ave)<br />

( D − 2d<br />

− d )<br />

= or<br />

P<br />

= 0.<br />

097 m<br />

π<br />

sr<br />

( l + k )<br />

⎛ 4 ⎞<br />

= µ τ<br />

⎝ 9 ⎠<br />

Le 0⎜<br />

⎟ be pr(<br />

ave)<br />

=<br />

9.<br />

6×<br />

10<br />

−9<br />

H<br />

re<br />

(2.84)<br />

(2.85)

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