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an investigation of dual stator winding induction machines

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2.3.7 Rotor Resist<strong>an</strong>ce Referred to the Stator<br />

The effective bar resist<strong>an</strong>ce is:<br />

r<br />

be<br />

re<br />

= rb<br />

+<br />

2⎛<br />

πP<br />

⎞<br />

2sin<br />

⎜<br />

⎟<br />

⎝ 2Sr<br />

⎠<br />

= 89.<br />

93 µ Ω<br />

The resist<strong>an</strong>ce per rotor mesh is:<br />

75<br />

'<br />

r r2<br />

(2.93)<br />

r r = 2rbe = 179.<br />

86 µ Ω<br />

(2.94)<br />

The rotor resist<strong>an</strong>ce referred to the <strong>stator</strong> is obtained as:<br />

2<br />

12k1<br />

N<br />

=<br />

Sr<br />

= 3.<br />

28 Ω<br />

2<br />

'<br />

s2<br />

r 2 r<br />

r<br />

To the XYZ <strong>winding</strong>, the rotor resist<strong>an</strong>ce is:<br />

2<br />

12k1<br />

N<br />

=<br />

Sr<br />

= 0.<br />

68 Ω<br />

2<br />

'<br />

s6<br />

r 6 rr<br />

r<br />

2.4 Machine Design II<br />

(2.95)<br />

(2.96)<br />

The general definition <strong>of</strong> the total air gap flux density produced by both <strong>of</strong> the <strong>stator</strong><br />

<strong>winding</strong> sets has been given in (2.4), which depends on time, the <strong>stator</strong> circumferential<br />

<strong>an</strong>gle <strong>an</strong>d the phase <strong>an</strong>gle between the two flux density components. The maximum value<br />

<strong>of</strong> the total flux density is independent <strong>of</strong> time. Hence for the purpose <strong>of</strong> the <strong>an</strong>alysis that<br />

follows the total air gap flux density is expressed as:<br />

( p θ ) + B cos(<br />

θ + δ )<br />

B (2.97)<br />

= B1<br />

cos 1 2 p2

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