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ExcIEEEAC7B

IEEE 421.5-2005 type AC7B model. The model represents excitation systems which consist of an AC alternator with either stationary or rotating rectifiers to produce the DC field requirements. It is an upgrade to earlier AC excitation systems, which replace only the controls but retain the AC alternator and diode rectifier bridge. Reference: IEEE 421.5-2005, 6.7. Note, however, that in IEEE 421.5-2005, the [1 / sTE] block is shown as [1 / (1 + sTE)], which is incorrect.

Inheritance

Attributes

LabelTypeMultiplicityComment
kcFloat1..1Rectifier loading factor proportional to commutating reactance (KC) (>= 0). Typical value = 0,18.
kdFloat1..1Demagnetizing factor, a function of exciter alternator reactances (KD) (>= 0). Typical value = 0,02.
kdrFloat1..1Voltage regulator derivative gain (KDR) (>= 0). Typical value = 0.
keFloat1..1Exciter constant related to self-excited field (KE). Typical value = 1.
kf1Float1..1Excitation control system stabilizer gain (KF1) (>= 0). Typical value = 0,212.
kf2Float1..1Excitation control system stabilizer gain (KF2) (>= 0). Typical value = 0.
kf3Float1..1Excitation control system stabilizer gain (KF3) (>= 0). Typical value = 0.
kiaFloat1..1Voltage regulator integral gain (KIA) (>= 0). Typical value = 59,69.
kirFloat1..1Voltage regulator integral gain (KIR) (>= 0). Typical value = 4,24.
klFloat1..1Exciter field voltage lower limit parameter (KL). Typical value = 10.
kpFloat1..1Potential circuit gain coefficient (KP) (> 0). Typical value = 4,96.
kpaFloat1..1Voltage regulator proportional gain (KPA) (> 0 if ExcIEEEAC7B.kia = 0). Typical value = 65,36.
kprFloat1..1Voltage regulator proportional gain (KPR) (> 0 if ExcIEEEAC7B.kir = 0). Typical value = 4,24.
seve1Float1..1Exciter saturation function value at the corresponding exciter voltage, VE1, back of commutating reactance (SE[VE1]) (>= 0). Typical value = 0,44.
seve2Float1..1Exciter saturation function value at the corresponding exciter voltage, VE2, back of commutating reactance (SE[VE2]) (>= 0). Typical value = 0,075.
tdrFloat1..1Lag time constant (TDR) (>= 0). Typical value = 0.
teFloat1..1Exciter time constant, integration rate associated with exciter control (TE) (> 0). Typical value = 1,1.
tfFloat1..1Excitation control system stabilizer time constant (TF) (> 0). Typical value = 1.
vamaxFloat1..1Maximum voltage regulator output (VAMAX) (> 0). Typical value = 1.
vaminFloat1..1Minimum voltage regulator output (VAMIN) (< 0). Typical value = -0,95.
ve1Float1..1Exciter alternator output voltages back of commutating reactance at which saturation is defined (VE1) (> 0). Typical value = 6,3.
ve2Float1..1Exciter alternator output voltages back of commutating reactance at which saturation is defined (VE2) (> 0). Typical value = 3,02.
veminFloat1..1Minimum exciter voltage output (VEMIN) (<= 0). Typical value = 0.
vfemaxFloat1..1Exciter field current limit reference (VFEMAX). Typical value = 6,9.
vrmaxFloat1..1Maximum voltage regulator output (VRMAX) (> 0). Typical value = 5,79.
vrminFloat1..1Minimum voltage regulator output (VRMIN) (< 0). Typical value = -5,79.