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SIMPLORER User Manual V6.0 - FER-a

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4<br />

5<br />

174 Modeling with Circuit Components<br />

Electrical coupling of phase quantities with the orthogonal quantities<br />

γ() t = p ⋅ ω() t dt<br />

v1α() t<br />

v1β() t<br />

v1d() t<br />

v1q() t<br />

=<br />

=<br />

=<br />

∫<br />

2<br />

--v<br />

1<br />

3 1a() t --v<br />

1<br />

–<br />

3 1b() t – --v<br />

3 1c() t<br />

------v<br />

3 3<br />

3 1b() t – ------v<br />

3 1c() t<br />

v1α() t ⋅ cos(<br />

γt () ) + v1β() t ⋅ sin(<br />

γt () )<br />

= v1α() t ⋅ sin(<br />

γt () ) – v1β ⋅ cosγ()<br />

t<br />

Dialog Settings<br />

� «Parameters»<br />

Click the «Value» field of the corresponding parameter to define a value. Common parameter<br />

types. Enter a numerical value, a variable, or an expression. Look the meaning up in the parameter<br />

table below.<br />

� «Initial Values»<br />

Click the «Value» field of the corresponding parameter to define the initial values. Common<br />

parameter types. Enter a numerical value, a variable, or an expression. The values are set only<br />

once at simulation start. Look the meaning up in the parameter table below.<br />

� «Angular Dimension»<br />

In the list, select radians or degrees for the angular dimension. The dimension is valid for all<br />

angle input quantities in the machine model.<br />

Component Parameters<br />

i1α() t = i1d() t ⋅ cos(<br />

γt () ) – i1q() t ⋅ sin(<br />

γt () )<br />

i1β() t<br />

= i1d() t ⋅ sin(<br />

γt () ) + i1q() t ⋅ cos(<br />

γt () )<br />

i1a() t = i1α() t<br />

1 3<br />

i1b() t = – --i<br />

2 1α() t + ------i<br />

2 1β() t<br />

1 3<br />

i1c() t =<br />

– --i<br />

2 1α() t – ------i<br />

2 1β() t<br />

Description [Unit] Parameter Name Data Type<br />

Load Torque [Nm] LOAD real<br />

Stator Resistance [Ω] R1 real<br />

Damper Resistance [Ω] R2 real<br />

Stator Inductance d-Axis [H]<br />

Leakage inductance of stator side<br />

L1D real<br />

Stator Inductance q-Axis [H]<br />

Leakage inductance of stator side<br />

L1Q real<br />

Damper Inductance d-Axis [H]<br />

Leakage inductance of damper circuit side<br />

L2D real<br />

Damper Inductance q-Axis [H]<br />

Leakage inductance of damper circuit side<br />

L2Q real<br />

Mutual Inductance stator-damper d-Axis [H] LM1D real<br />

Mutual Inductance stator-damper q-Axis [H] LM12Q real<br />

Excitation Resistance [Ω] RE real<br />

Excitation Inductance d-Axis [H] LE real<br />

Mutual Inductance stator-exciter d-Axis [H] LM1ED real<br />

Mutual Inductance damper-exciter q-Axis [H] LM2EQ real<br />

Number of Pole Pairs [/] P real<br />

Moment of Inertia [kg*m²] J real

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