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an investigation of dual stator winding induction machines

an investigation of dual stator winding induction machines

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added to the system at t = 4 seconds. In the dynamic responses <strong>of</strong> the system, rotor speed<br />

comm<strong>an</strong>d ramps down <strong>an</strong>d up between -126 rad/sec <strong>an</strong>d 126 rad/sec. The torque partition<br />

factor is 0.5 from 0 to 18 seconds except that when the absolute value <strong>of</strong> rotor speed is<br />

within 30 rad/sec torque partition factor ch<strong>an</strong>ges to be -0.2. The proposed reactive power<br />

factor is applied to the system <strong>an</strong>d the expression for that factor is given as:<br />

⎧k<br />

⎨<br />

⎩k<br />

i<br />

i<br />

= 0<br />

= sig<br />

( ω )<br />

r<br />

ωr<br />

≥ 45 rad / sec<br />

ω < 45 rad / sec<br />

r<br />

where, the subscript i=1 or 2, which represents the reactive power factor for 2-pole<br />

<strong>winding</strong> set <strong>an</strong>d 6-pole <strong>winding</strong> set respectively. It should be noticed that both reactive<br />

power factors c<strong>an</strong> be adjusted independently to achieve best perform<strong>an</strong>ce. In Figure<br />

10.32-10.33, the variables for 2-pole <strong>winding</strong> set are represented by blue solid line while<br />

the variables from 6-pole <strong>winding</strong> set are represented by red dashed line. The actual <strong>an</strong>d<br />

estimated <strong>stator</strong> currents <strong>an</strong>d rotor flux linkage for both <strong>winding</strong> sets are shown in Figure<br />

10.34 <strong>an</strong>d 10.35 with blue-solid line <strong>an</strong>d red-dashed line respectively. All the simulation<br />

results validate the proposed sensorless control scheme <strong>an</strong>d the design methodologies.<br />

416

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