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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 />

(i)<br />

(j)<br />

(k)<br />

(m)<br />

(n)<br />

Figure 8.9 Experimental results for ch<strong>an</strong>ging load resist<strong>an</strong>ce from 90 Ω to 60 Ω when reference<br />

dc voltage is 240 V, K is 3. from top. (a) dc voltage (almost 240 V); (b) power <strong>of</strong> ABC <strong>winding</strong>s<br />

(ch<strong>an</strong>ges from 304 W to 381 W), (c) power <strong>of</strong> XYZ <strong>winding</strong>s (ch<strong>an</strong>ges from 646 W to 724 W),<br />

(d) phase A current (ch<strong>an</strong>ge from 2.5A to 2.9 A), (e) phase X current (ch<strong>an</strong>ges from 4.7 A to 4.1<br />

A), (f) d-axis voltage <strong>of</strong> ABC <strong>winding</strong>s Vds1 (ch<strong>an</strong>ges from –26 to -13 V), (g) q-axis voltage <strong>of</strong><br />

ABC <strong>winding</strong>s Vqs1 (ch<strong>an</strong>ges from 86 V to 81 V), (h) d-axis voltage <strong>of</strong> XYZ <strong>winding</strong>s Vds2 (from<br />

-26 V to -24 V), (i) q-axis voltage <strong>of</strong> XYZ <strong>winding</strong>s Vqs2 (ch<strong>an</strong>ges from 104 V to 92 V), (j) q-axis<br />

current <strong>of</strong> ABC <strong>winding</strong>s iqs1 (ch<strong>an</strong>ges from –1.2 A to –1.9 A), (k) d-axis current <strong>of</strong> ABC<br />

<strong>winding</strong>s ids1 (ch<strong>an</strong>ges from 1.7 A to 2.0 A), (m) q-axis current <strong>of</strong> XYZ <strong>winding</strong>s iqs2(ch<strong>an</strong>ges<br />

from –2.2 A to -2.3 A), (n) d-axis current <strong>of</strong> XYZ <strong>winding</strong>s ids2(ch<strong>an</strong>ges from 2.3 A to 1.9 A).<br />

311

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