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an investigation of dual stator winding induction machines

an investigation of dual stator winding induction machines

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conduct away the heat produced in the <strong>stator</strong> under the temperature limit <strong>of</strong> the <strong>winding</strong><br />

insulation. After the machine is rewound, the value <strong>of</strong> K ) in the <strong>dual</strong> <strong>winding</strong><br />

machine is not expected to be bigger th<strong>an</strong> the one in the st<strong>an</strong>dard single <strong>stator</strong>-<strong>winding</strong><br />

machine. If it is assumed that the partition <strong>of</strong> the surface current density K ) follows<br />

the pattern <strong>of</strong> the air gap flux density, then the surface current density <strong>of</strong> each <strong>winding</strong><br />

c<strong>an</strong> be figured out.<br />

57<br />

s(rms<br />

s(rms<br />

The surface current density <strong>of</strong> the st<strong>an</strong>dard 4-pole 3-hp <strong>induction</strong> machine c<strong>an</strong> be<br />

calculated as:<br />

K<br />

=<br />

s(<br />

rms)<br />

212.<br />

5<br />

P<br />

=<br />

2 ⎛ 2π<br />

⎞<br />

⎜ ⎟<br />

⎜<br />

Ωsk<br />

1<br />

120 ⎟<br />

⎝ ⎠<br />

A/<br />

cm<br />

2<br />

mech<br />

2 ( D l )<br />

is e<br />

B η cosφ<br />

g<br />

(2.25)<br />

Then the surface current density <strong>of</strong> the 2-pole <strong>winding</strong> <strong>an</strong>d the 6-pole <strong>winding</strong> c<strong>an</strong> be<br />

expressed as:<br />

K<br />

K<br />

s2(<br />

rms)<br />

s6(<br />

rms)<br />

=<br />

=<br />

0.<br />

2<br />

0.<br />

8<br />

⋅ K<br />

⋅ K<br />

s(<br />

rms)<br />

s(<br />

rms)<br />

The power <strong>of</strong> the <strong>dual</strong> <strong>stator</strong> <strong>winding</strong> <strong>induction</strong> machine c<strong>an</strong> be written as:<br />

P<br />

2 / 6<br />

= P + P<br />

2<br />

6<br />

2 ⎛ 2π<br />

⎞<br />

= ⎜ ⎟<br />

⎜<br />

k<br />

120 ⎟<br />

⎝ ⎠<br />

= 1.<br />

126 kW<br />

1<br />

2 ( D l ) η cosφ(<br />

Ω B K + Ω B K )<br />

is e<br />

s2<br />

g 2<br />

s2(<br />

rms)<br />

s6<br />

g 6<br />

s6(<br />

rms)<br />

(2.26)<br />

(2.27)

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