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an investigation of dual stator winding induction machines

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ei<br />

where, exp( − jϕ ) = cos(<br />

ϕ ) − jsin(<br />

ϕ ) , cos(<br />

ϕ )<br />

<strong>an</strong>d sin(<br />

)<br />

i<br />

i<br />

i<br />

i<br />

304<br />

ω<br />

=<br />

ω + a<br />

Then the rotor flux linkages are estimated using <strong>stator</strong> flux linkages as:<br />

λ<br />

λ<br />

qri<br />

dri<br />

where,<br />

L<br />

=<br />

L<br />

ri<br />

mi<br />

L<br />

=<br />

L<br />

L<br />

σ i<br />

ri<br />

mi<br />

⋅<br />

⋅<br />

= L<br />

( λ − L I )<br />

qsi<br />

( λ − L I )<br />

si<br />

dsi<br />

L<br />

−<br />

L<br />

2<br />

mi<br />

ri<br />

σ i<br />

σ i<br />

.<br />

qsi<br />

dsi<br />

8.7 Simulation <strong>an</strong>d Experimental Results<br />

2<br />

ei<br />

2<br />

i<br />

= ω<br />

a<br />

i ϕ i<br />

.<br />

2 2<br />

ei + ai<br />

(8.52)<br />

The models <strong>of</strong> the generator systems are built up using the MATLAB/SIMULINK to<br />

evaluate the proposed control scheme for the parallel rectifier. The parameters <strong>of</strong> the <strong>dual</strong><br />

<strong>winding</strong> <strong>induction</strong> machine are given in Table 8.2.<br />

The simulation results in Figure 8.5 show the starting process <strong>of</strong> the machine. The<br />

rotor speed is maintained at 188 rad/s. The reference dc voltage is set to be 240V. It is<br />

clearly shown that by using the proposed control scheme, the dc voltage is well regulated.<br />

The dynamic responses <strong>of</strong> the generation system to ch<strong>an</strong>ges in load <strong>an</strong>d portioning<br />

coefficient K are shown in Figure 8.6. When the rotor speed is const<strong>an</strong>t <strong>an</strong>d the system is<br />

running at the steady state, the load resist<strong>an</strong>ce is ch<strong>an</strong>ged from 90 Ω to 60 Ω at 1.5 s,<br />

rotor speed ch<strong>an</strong>ges to 168 rad/s from 2.2 s to 2.5 s, while the power distribution<br />

coefficient K is ch<strong>an</strong>ged from 1 to 3 at 2.8 s to see how it influences the output power <strong>of</strong><br />

each <strong>winding</strong>. The dc voltage adequately tracks the reference under the dynamic<br />

situation.

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