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an investigation of dual stator winding induction machines

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10.4.4 Stator D-axis Current Controller Design<br />

The tr<strong>an</strong>sfer function for the d-axis current controller is similar to the one <strong>of</strong> the q-<br />

axis current <strong>an</strong>d will not be repeated here. The designed parameters c<strong>an</strong> be found as:<br />

⎧k<br />

⎨<br />

⎩<br />

pd<br />

=<br />

k<br />

id<br />

2ω0<br />

L<br />

2<br />

= ω L<br />

0<br />

σi<br />

σi<br />

− r<br />

si<br />

359<br />

(10.54)<br />

The stability issue in the control design has been considered in previous work by<br />

locating the poles <strong>of</strong> the tr<strong>an</strong>sfer function at the left-side <strong>of</strong> s-pl<strong>an</strong>e. However, the zeros<br />

<strong>of</strong> tr<strong>an</strong>sfer functions c<strong>an</strong> also greatly influence the system perform<strong>an</strong>ce. Hence to<br />

improve the system dynamic perform<strong>an</strong>ce, the zeros <strong>of</strong> the tr<strong>an</strong>sfer functions should have<br />

negative real parts also. In all above controller designs, the negative real part <strong>of</strong> zeros c<strong>an</strong><br />

be ensured when k p <strong>an</strong>d k i <strong>of</strong> a controller have the same sign. Normally, these control<br />

parameters are all chosen to be positive.<br />

10.5 Simulation <strong>an</strong>d Experimental Results for Indirect Flux Orientation<br />

Control<br />

The proposed control scheme has been simulated using MATLAB/SIMULINK. Both<br />

the starting process <strong>an</strong>d dynamic response <strong>of</strong> the system have been given to validate the<br />

effectiveness <strong>of</strong> the proposed control scheme. The parameters <strong>of</strong> the controllers are<br />

shown in Table 10.1

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