modelZ_matrixTrDat1

z-matrix from transient data, n=1

Information

Equivalent circuit on diagram layer!

Test generator, transient order = 1.

Transient data are:

  tc_d  = {0.684058354104098} d-axis
  to_d  = {4.171788659833010} d-axis
  xtr_d = {0.290231213872833} d-axis

  tc_q  = {0.684058354104098} q-axis
  to_q  = {4.171788659833010} q-axis
  xtr_q = {0.290231213872833} q-axis

Corresponding circuit data are:

  {r[1:n], r_0} = {0.0011, 0.005},    d- and q-axis
  {xsig[1:n], xsig_0} = {0.13, 0.17}, d- and q-axis
  {xm[1:n], xm_0} = {0, 1.6} d- and q-axis (no coupling terms in transient order 1)
  v_f denotes the field voltage.

The code uses

  xsig_s for xsig_0: armature leakage reactance
  xsig_r for xsig:   rotor leakage reactances
  r_s    for r_0:    armature (stator) resistance
  r_r    for r:      rotor resistances

Parameters

TypeNameDefaultDescription
SI.AngularFrequencyomega_nom2*pi*60nom ang frequency
Booleanuse_xtrtrueuse t_closed and x_transient?
SI.Timetc_d{0.684058354104098}time constant closed-loop d-axis {tc_d', tc_d'', ..}
SI.Timetc_q{0.684058354104098}time constant closed-loop q-axis {tc_q', tc_q'', ..}
SI.Timeto_d{4.17178865983301}time constant open-loop d-axis {to_d', to_d'', ..}
SI.Timeto_q{4.17178865983301}time constant open-loop q-axis {to_q', to_q'', ..}
SIpu.Reactancextr_d{0.290231213872833}trans reactance d-axis {xtr_d', xtr_d'', ..}
SIpu.Reactancextr_q{0.290231213872833}trans reactance q-axis {xtr_q', xtr_q'', ..}
SIpu.Reactancex_d1.77syn reactance d-axis
SIpu.Reactancex_q1.77syn reactance q-axis
SIpu.Reactancexsig_s0.17leakage reactance stator
SIpu.Resistancer_s0.005resistance stator
SIpu.Currentif00induced field current at v_s=V_nom/0deg
SIpu.Angle_degif0_deg0angle(if0) at v_s=Vnom/0deg (sign: i_f behind v_s)

Components

TypeNameDefaultDescription
Realzr_d
Realzx_d
Realzr_q
Realzx_q

Contents

NameDescription
T_openprotected
z_matrixprotected