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an investigation of dual stator winding induction machines

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The second term in (5.64) is zero unless,<br />

k = P2<br />

Then the induced EMF equation is simplified as:<br />

u<br />

qrqi<br />

() t<br />

2 ⎧ µ ω r<br />

*<br />

( ( ) ) ⎫<br />

0 2<br />

P2<br />

j ω2t<br />

−2<br />

P2ω<br />

rt<br />

−P2<br />

i−1<br />

α r<br />

⎪ j 2 ⋅ C s2<br />

⋅ I iR2<br />

⋅ C R ⋅ e<br />

⎪<br />

⎪<br />

P2<br />

g<br />

⎪<br />

= 2 πrl<br />

Re⎨<br />

⎬ (5.65)<br />

2<br />

⎪ µ 0ω<br />

2r<br />

*<br />

P j(<br />

ω t+<br />

P ( i−1)<br />

α ) ⎪<br />

2<br />

2 2 r<br />

⎪−<br />

j 2 ⋅ Cs<br />

2 ⋅ I iR2<br />

⋅ C R ⋅ e<br />

⎪<br />

⎩ P2<br />

g<br />

⎭<br />

Then by adding the EMFs in the <strong>stator</strong> <strong>winding</strong> X due to all the rotor loop currents<br />

induced by the XYZ <strong>winding</strong> set, the total EMF is given as:<br />

u<br />

qrq<br />

() t<br />

2<br />

N<br />

⎧<br />

r<br />

µ r<br />

*<br />

( ) ( ( ) ) ⎫<br />

0ω<br />

2<br />

P2<br />

j ω2t<br />

−2<br />

P2ω<br />

rt<br />

− j P2<br />

i−1<br />

α r<br />

⎪ j 2 ⋅ Cs<br />

2 ⋅ C R ⋅ e ⋅∑<br />

I iR2<br />

⋅ e ⎪<br />

⎪ P2<br />

g<br />

i=<br />

1<br />

⎪<br />

= 2π<br />

rl Re⎨<br />

⎬ (5.66)<br />

2<br />

N r<br />

⎪ µ 0ω<br />

2r<br />

*<br />

P j(<br />

t ) j(<br />

P ( i−1)<br />

) ⎪<br />

2 ω2<br />

2 α r<br />

⎪−<br />

j 2 ⋅ Cs<br />

2 ⋅ C R ⋅ e ⋅∑<br />

I iR2<br />

⋅ e<br />

⎪<br />

⎩ P2<br />

g<br />

i=<br />

1<br />

⎭<br />

A new frequency component except the fundamental one is induced in the XYZ<br />

<strong>winding</strong> set <strong>an</strong>d it has a rotor speed dependent frequency given as ω2 − 2P2ω<br />

r .<br />

5.2.1.10 Voltages in the ABC Winding Set due to the Rotor Currents induced by<br />

Currents Flowing in the XYZ Winding Set. The EMF induced in the <strong>stator</strong> <strong>winding</strong> c<strong>an</strong><br />

be obtained by multiplying the electric field with the <strong>winding</strong> distribution <strong>of</strong> the phase A<br />

as:<br />

2π<br />

() t = rl C ( θ ) ⋅ E ( θ t)<br />

∫<br />

u qrqi<br />

prqi A , dθ<br />

(5.67)<br />

0<br />

Substituting (5.18) <strong>an</strong>d (5.62) into (5.67) <strong>an</strong>d integrating,<br />

209

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