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an investigation of dual stator winding induction machines

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(a)<br />

(b)<br />

(c)<br />

(d)<br />

(e)<br />

(f)<br />

(g)<br />

(h)<br />

(k)<br />

(m)<br />

(n)<br />

(p)<br />

(q)<br />

Figure 9.10. The dynamic response <strong>of</strong> ch<strong>an</strong>ging parameters, from top: (a) q-axis voltage Vqs1 <strong>of</strong><br />

ABC <strong>winding</strong>s, (b) d-axis voltage Vds1 <strong>of</strong> ABC <strong>winding</strong>s, (c) rotor mech<strong>an</strong>ical speed ωrm, (d)<br />

electromagnetic torque Te1 <strong>of</strong> ABC <strong>winding</strong>s, (e) comm<strong>an</strong>d <strong>an</strong>d actual dc voltage Vdc1, (f) q-axis<br />

voltage Vqs2 <strong>of</strong> XYZ <strong>winding</strong>s, (g) d-axis voltage Vds2 <strong>of</strong> XYZ <strong>winding</strong>s, (h) electromagnetic<br />

torque Te2 <strong>of</strong> XYZ <strong>winding</strong>s, (k) comm<strong>an</strong>d <strong>an</strong>d actual dc voltage Vdc2, (m) total dc voltage, (n)<br />

rotor resist<strong>an</strong>ces, (p) magnetizing induct<strong>an</strong>ce <strong>of</strong> ABC <strong>winding</strong>s, (q) magnetizing induct<strong>an</strong>ce <strong>of</strong><br />

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

336

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