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an investigation of dual stator winding induction machines

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esist<strong>an</strong>ce c<strong>an</strong> be calculated by first estimating <strong>an</strong> average length for each coil, then<br />

adding up the coil in series <strong>an</strong>d parallel as appropriate.<br />

The me<strong>an</strong> length <strong>of</strong> the coil is approximately:<br />

l = +<br />

(2.90)<br />

c<br />

2ls + 4le<br />

2 4le3<br />

where l s is the length <strong>of</strong> the <strong>stator</strong> stack including ducts; l e2<br />

is the straight extension <strong>of</strong><br />

the coils beyond the stack; l e3<br />

is the diagonal portion <strong>of</strong> the end <strong>winding</strong>.<br />

l<br />

e3<br />

pτ<br />

=<br />

2<br />

=<br />

p(<br />

ave)<br />

0.<br />

064<br />

m<br />

τ<br />

2<br />

s1<br />

τ<br />

−<br />

s(<br />

ave)<br />

( b + t )<br />

The me<strong>an</strong> length <strong>of</strong> a coil is therefore,<br />

l c<br />

= 0.<br />

529<br />

m<br />

The <strong>stator</strong> resist<strong>an</strong>ce is:<br />

⎛ N<br />

s c<br />

s2<br />

= ⎜ ⎟ρ<br />

⎝ C ⎠ ac<br />

r<br />

=<br />

0.<br />

5<br />

⎞<br />

Ω<br />

l<br />

@75<br />

o<br />

c<br />

e<br />

2<br />

74<br />

(2.91)<br />

(2.92)<br />

Follow the same progress, the parameters for the 6-pole <strong>winding</strong> c<strong>an</strong> be calculated as:<br />

Lms6 =<br />

Lls6 =<br />

s6<br />

0.<br />

06<br />

2.<br />

5<br />

H<br />

mH<br />

r = 0.<br />

3 Ω @75<br />

o<br />

Because the length <strong>of</strong> the end <strong>winding</strong> extension for 6-pole <strong>winding</strong> is much shorter<br />

th<strong>an</strong> that <strong>of</strong> the 2-pole, the leakage induct<strong>an</strong>ce is much smaller which matches our<br />

expectation.

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