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an investigation of dual stator winding induction machines

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Figure 9.12. The steady state waveforms <strong>of</strong> the <strong>dual</strong> <strong>winding</strong> generator, (a) ABC<br />

<strong>winding</strong>s, from top: (1) phase A current Ia (4.3 A/div); (2) phase B current Ib (4.3<br />

A/div); (3) dc voltage Vdc1 (200 V/div); (4) line-to-line voltage Vbc (200 V/div), (b)<br />

XYZ <strong>winding</strong>s, from top: (1) phase X current Ix (4.3 A/div); (2) phase Y current Iy<br />

xxxii<br />

Page<br />

(4.3 A/div); (3) dc voltage Vdc2 (200 V/div); (4) line-to-line voltage Vyz (200 V/div).<br />

................................................................................................................................. 338<br />

Figure 10.1 The diagram <strong>of</strong> control scheme ................................................................... 354<br />

Figure 10.2 Controller structures, (a) diagram <strong>of</strong> PI controller, (b) diagram <strong>of</strong> PID<br />

controller, (c) diagram <strong>of</strong> PD controller, (d) diagram <strong>of</strong> IP controller. .................. 355<br />

Figure 10.3 Diagram <strong>of</strong> pole placement using Butterworth method .............................. 356<br />

Figure 10.4 Starting process <strong>of</strong> <strong>dual</strong> <strong>stator</strong> <strong>winding</strong> <strong>induction</strong> motor, (a) q-axis voltage<br />

V qsi , (b) d-axis voltage V dsi , (c) reference <strong>an</strong>d actual rotor mech<strong>an</strong>ical speed ω rm , (d)<br />

slip frequency ω sli , (e) electromagnetic torque T ei,<br />

(f) total torque T e.<br />

.................... 361<br />

Figure 10.5 Dynamic response <strong>of</strong> <strong>dual</strong> <strong>stator</strong> <strong>winding</strong> <strong>induction</strong> motor, (a) q-axis voltage<br />

V qsi , (b) d-axis voltage V dsi , (c) reference <strong>an</strong>d actual rotor mech<strong>an</strong>ical speed ω rm , (d)<br />

slip frequency ω sli , (e) electromagnetic torque T ei , (f) total torque T e,<br />

(g) torque<br />

distribution factor K................................................................................................ 362<br />

Figure 10.6 Starting process <strong>of</strong> <strong>dual</strong> <strong>stator</strong> <strong>winding</strong> <strong>induction</strong> motor within low speed<br />

r<strong>an</strong>ge, (a) q-axis voltage V qsi , (b) d-axis voltage V dsi , (c) reference <strong>an</strong>d actual rotor<br />

mech<strong>an</strong>ical speed ω rm , (d) slip frequency ω sli , (e) electromagnetic torque T ei,<br />

(f) total<br />

torque e T .................................................................................................................. 364

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