
198
Rockwell Automation Publication 1407-UM002B-EN-P - February 2019
Appendix B
CGCM-DLR Unit Math Models
Voltage Regulator
Per-unit Block Diagram for Rotating Rectifier Excitation System
shows the
model of the CGCM-DLR excitation system that is used with a brush-type
rotating exciter.
The rotating exciter parameters are not included in this discussion because they
are the responsibility of the exciter manufacturer. V
P
is the input from the power
source for the excitation system.
A typical value for T
A
is 0. The forcing limit V
RLMT
is related to the power-input
voltage (V
P
) and the exciter field voltage (V
R
) as follows:
V
RLMT
= 1.4*V
P
/ V
R
The gain K
G
is used for compensating variations in system configuration such as
power input voltage. The per unit base of the parameters V
P
and V
R
is the
nominal exciter field voltage at no load.
The PID gains K
P
, K
I
, and K
D
are custom designed for the best performance for
each generator/exciter system. These continuous time gains are changed to
discrete and implemented in the CGCM-DLR digital controller. The PID gains
can be obtained from the PID Calculator software available from Rockwell
Automation.
Figure 60 - Per-unit Block Diagram for Rotating Rectifier Excitation System
V
RLMT
/(V
p
0.005)
-V
RLMT
/(V
p
0.005)
Содержание 1407-CGCM-DLR
Страница 1: ...Combination Generator Control Module Catalog Numbers 1407 CGCM DLR User Manual OriginalInstructions...
Страница 14: ...14 Rockwell Automation Publication 1407 UM002B EN P February 2019 Chapter 1 General Information Notes...
Страница 204: ...204 Rockwell Automation Publication 1407 UM002B EN P February 2019 Appendix B CGCM DLR Unit Math Models Notes...
Страница 220: ...220 Rockwell Automation Publication 1407 UM002B EN P February 2019 Appendix D Specifications Notes...
Страница 260: ...260 Rockwell Automation Publication 1407 UM002B EN P February 2019 Appendix G Installing the Add on Profile Notes...
Страница 266: ...266 Rockwell Automation Publication 1407 UM002B EN P February 2019 Index Notes...
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