27.02.2013 Views

an investigation of dual stator winding induction machines

an investigation of dual stator winding induction machines

an investigation of dual stator winding induction machines

SHOW MORE
SHOW LESS

Create successful ePaper yourself

Turn your PDF publications into a flip-book with our unique Google optimized e-Paper software.

Figure 9.5(a), by varying the q-axis modulation index, a maximum output dc voltage<br />

corresponding to a certain magnetizing flux value c<strong>an</strong> be generated under a const<strong>an</strong>t slip<br />

<strong>an</strong>d const<strong>an</strong>t load resist<strong>an</strong>ce condition. The variation <strong>of</strong> the maximum output dc voltage<br />

with the magnetizing flux linkage for a const<strong>an</strong>t slip <strong>an</strong>d a const<strong>an</strong>t load resist<strong>an</strong>ce is<br />

shown in Figure 9.5(b). The load resist<strong>an</strong>ce R L3<br />

is also const<strong>an</strong>t in Figure 9.5. It should<br />

be noted that equations (9.18-9.19) are mutually constrained, defined in (9.29), so that the<br />

slip frequencies <strong>of</strong> two <strong>winding</strong> sets depend on each other if the rotor speed, the rotor<br />

flux linkages <strong>of</strong> both <strong>winding</strong> sets <strong>an</strong>d coefficient γ are all fixed.<br />

2 ⎡ ⎛ Lr1λ<br />

⎞ dr1<br />

2 ω λ<br />

⎢r1<br />

⎜ ωs1<br />

⎢ rr1L<br />

⎟ +<br />

m1<br />

rr1<br />

⎣ ⎝ ⎠<br />

⎡ ⎛ Lr<br />

2λ<br />

= ⎢r2<br />

⎜<br />

⎢ rr<br />

2L<br />

⎣ ⎝<br />

dr2<br />

m2<br />

2<br />

2<br />

r1<br />

dr1<br />

⎞ 2 ωr2λ<br />

⎟ ωs2<br />

+<br />

⎠ rr<br />

2<br />

λ<br />

ωs1<br />

+ r1<br />

L<br />

2<br />

dr2<br />

2<br />

dr1<br />

2<br />

m1<br />

r<br />

−<br />

L<br />

2<br />

dr2<br />

2<br />

m2<br />

r1<br />

2<br />

r1<br />

λ r<br />

ωs2<br />

+ r2<br />

−<br />

L L<br />

⎤<br />

2<br />

λdr1⎥<br />

⎥1<br />

R<br />

⎦<br />

r2<br />

2<br />

r2<br />

325<br />

λ<br />

2<br />

dr2<br />

L1<br />

2<br />

γ<br />

+ 1<br />

⎤<br />

⎥<br />

⎥1<br />

R<br />

⎦<br />

( γ ⋅ R )<br />

L2<br />

L3<br />

2 ( 1−γ<br />

)<br />

1 [ ( 1−γ<br />

) R ]<br />

+<br />

L3<br />

(9.29)<br />

This constraint is applied in the selection <strong>of</strong> slip frequencies in the above <strong>an</strong>alysis.<br />

The simulation results <strong>of</strong> equation (9.29) under different rotor speed conditions are given<br />

in Figure 9.6 when λ 0.<br />

45 Wb, λ 0.<br />

15 Wb, γ = 0.<br />

6 , R = 80 Ω , R = 80 Ω<br />

<strong>an</strong>d R = 200 Ω .<br />

L3<br />

dr1<br />

=<br />

dr 2 =<br />

L1<br />

L2

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!