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

You also want an ePaper? Increase the reach of your titles

YUMPU automatically turns print PDFs into web optimized ePapers that Google loves.

Figure 5.2. Simulation results for equal slip condition, the red dot-dash line is the result<br />

for two independent rotor circuit model <strong>an</strong>d blue solid line is for one rotor circuit<br />

model. From top: (a) Phase X current, (b) phase A current, (c) rotor speed, (d) total<br />

electromagnetic torque, (e) electromagnetic torque from XYZ <strong>winding</strong>s, (f)<br />

electromagnetic torque from ABC <strong>winding</strong>s, (g) slip frequency, (h) frequency <strong>of</strong><br />

xxii<br />

Page<br />

XYZ <strong>winding</strong>s......................................................................................................... 231<br />

Figure 5.3. Experimental results for equal slip condition. In part (I), from top: (a) Phase X<br />

current (ch<strong>an</strong>ges from 3.4A to 2.8A), (b) phase A current (ch<strong>an</strong>ges from 0.7A to<br />

2.1A), (c) rotor speed (ch<strong>an</strong>ges from 1785 rpm to 1752 rpm); in part (II) from top:<br />

(d) total electromagnetic torque (ch<strong>an</strong>ges from 3.2 Nm to 3.3 Nm), (e)<br />

electromagnetic torque from XYZ <strong>winding</strong>s (ch<strong>an</strong>ges from 2.95 Nm to 2.5Nm), (f)<br />

electromagnetic torque from ABC <strong>winding</strong>s (ch<strong>an</strong>ges from 0.25 Nm to 0.9 Nm), (g)<br />

electrical speed <strong>of</strong> XYZ <strong>winding</strong>s (ch<strong>an</strong>ges from 565 rad/s to 556 rad/s)............. 232<br />

Figure 6.1: Main flux saturation. B1 = 0.9 T, B3 = 1.1T, f1 = 30 Hz, f2 = 90 Hz, (a)<br />

Unsaturated <strong>an</strong>d saturated air-gap flux density at t = 0.0, (b) Fourier series <strong>of</strong> the<br />

unsaturated <strong>an</strong>d saturated waveforms, (c) saturated air-gap flux density distribution<br />

as functions <strong>of</strong> time <strong>an</strong>d circumferential <strong>an</strong>gle....................................................... 239<br />

Figure 6.2: The influence <strong>of</strong> phase shift <strong>an</strong>gle on the components <strong>of</strong> the saturated air-gap<br />

flux density. (a) Fundamental, (b) third, (c) fifth, (d) seventh, (e) ninth harmonics.<br />

................................................................................................................................. 240

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

Saved successfully!

Ooh no, something went wrong!