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an investigation of dual stator winding induction machines

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4.4.2 Stator Rotor Mutual Induct<strong>an</strong>ces <strong>of</strong> the XYZ Winding Set<br />

The equation to calculate the mutual induct<strong>an</strong>ce is the same as the one for the ABC<br />

'<br />

<strong>winding</strong> set, however, since the XYZ <strong>winding</strong> set has 6 pole, ( )<br />

178<br />

K θ in the equation will<br />

be zero for the XYZ <strong>winding</strong> set, such that the difference between the waveforms <strong>of</strong> the<br />

ABC <strong>winding</strong> set <strong>an</strong>d the XYZ <strong>winding</strong> set c<strong>an</strong> be found not only in the frequency, but<br />

also in the envelope.<br />

The <strong>stator</strong> rotor mutual induct<strong>an</strong>ce under the static rotor eccentricity, dynamic rotor<br />

eccentricity <strong>an</strong>d mixed rotor eccentricity conditions for the XYZ <strong>winding</strong> set are shown<br />

in the Figure 4.25, Figure 4.26 <strong>an</strong>d Figure 4.27 respectively. Differing from the mutual<br />

induct<strong>an</strong>ces in the ABC <strong>winding</strong> set, a uniform envelope c<strong>an</strong> be found in this case <strong>an</strong>d the<br />

magnitude <strong>of</strong> the envelope depends on the degree <strong>of</strong> the static rotor eccentricity. The<br />

waveform under the dynamic rotor eccentricity condition looks similar to the one in the<br />

const<strong>an</strong>t air gap, however, the magnitude <strong>of</strong> the induct<strong>an</strong>ce under the dynamic rotor<br />

eccentricity condition is greater th<strong>an</strong> the one under the static rotor eccentricity condition,<br />

<strong>an</strong>d the magnitude <strong>of</strong> the induct<strong>an</strong>ce increases if the degree <strong>of</strong> the dynamic eccentricity<br />

increases. Under the mixed rotor eccentricity condition, the uniform envelope is no<br />

longer sinusoidal <strong>an</strong>d the waveform contains more harmonic components.<br />

j<br />

rm

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