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an investigation of dual stator winding induction machines

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10.7 Observer Gain Design<br />

The scalar coefficient K i is called observer gain. The definition <strong>of</strong> the observer gain<br />

is given as:<br />

K<br />

i<br />

⎡K<br />

= ⎢<br />

⎣K<br />

11i<br />

21i<br />

+ jK<br />

+ jK<br />

12i<br />

22i<br />

⎤<br />

⎥<br />

⎦<br />

The error between the actual <strong>an</strong>d estimated states is defined as :<br />

i<br />

i<br />

i<br />

372<br />

(10.70)<br />

e = X − Xˆ<br />

(10.71)<br />

Substituting the expressions <strong>of</strong> states into (10.71), the derivative <strong>of</strong> the error is<br />

expressed as:<br />

&<br />

e&<br />

= X&<br />

− Xˆ<br />

i<br />

where<br />

=<br />

=<br />

=<br />

i<br />

( A − K ⋅C<br />

) X − ( Aˆ<br />

− K ⋅Cˆ<br />

)<br />

i<br />

i<br />

i<br />

i<br />

i<br />

i<br />

( Ai<br />

− Ki<br />

⋅Ci<br />

) X i − ( Ai<br />

− ∆Ai<br />

− Ki<br />

⋅Ci<br />

+ Ki<br />

⋅∆C<br />

i )<br />

( Ai<br />

− Ki<br />

⋅Ci<br />

) ei<br />

+ ( ∆Ai<br />

− Ki<br />

⋅ ∆Ci<br />

) ⋅ Xˆ<br />

i<br />

i<br />

Ai<br />

Ai<br />

Aˆ<br />

⎡0<br />

0 ⎤<br />

∆ = − i = γ i<br />

, Ci<br />

Ci<br />

Cˆ<br />

1 − ⎢<br />

∆ = − i<br />

0 j(<br />

ˆ ri ri ) ⎥<br />

,<br />

⎣ ω −ω<br />

⎦<br />

i<br />

Xˆ<br />

⎡ r<br />

⎤<br />

siLri<br />

rˆ<br />

siLˆ<br />

ri rsiLmi<br />

rˆ<br />

siLˆ<br />

mi<br />

⎢−<br />

+<br />

− ⎥<br />

<strong>an</strong>d = ⎢ Di<br />

Dˆ<br />

D<br />

i<br />

i Dˆ<br />

i<br />

γ ⎥<br />

i<br />

.<br />

⎢ r<br />

⎥<br />

riLmi<br />

rˆ<br />

riLˆ<br />

mi rriLsi<br />

rˆ<br />

riLˆ<br />

si<br />

⎢ − − + ⎥<br />

⎣ Di<br />

Dˆ<br />

D<br />

i<br />

i Dˆ<br />

i ⎦<br />

Then the characteristic equation <strong>of</strong> the error function is expressed as:<br />

i<br />

i<br />

i<br />

i<br />

i<br />

Xˆ<br />

i<br />

(10.72)<br />

λ = p ⋅ I − A + K ⋅ C<br />

(10.73)<br />

Substituting the expressions <strong>of</strong> the matrices A i , K i <strong>an</strong>d C i into (10.72), the<br />

characteristic equation becomes:

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