GE Multilin
T60 Transformer Protection System
5-33
5 SETTINGS
5.2 PRODUCT SETUP
5
The GGIO4 analog configuration points are shown below:
PATH: SETTINGS
PRODUCT SETUP
COMMUNICATIONS
IEC 61850 PROTOCOL
GGIO4 ANALOG CONFIGURATION
The
NUMBER OF ANALOG POINTS
setting determines how many analog data points will exist in GGIO4. When this value is
changed, the T60 must be rebooted in order to allow the GGIO4 logical node to be re-instantiated and contain the newly
configured number of analog points.
The measured value settings for each of the 32 analog values are shown below.
PATH: SETTINGS
PRODUCT...
COMMUNICATIONS
IEC 61850 PROTOCOL
GGIO4 ANALOG CONFIGURATION
GGIO4 ANALOG 1(32) MEASURED VALUE
These settings are configured as follows.
•
ANALOG IN 1 VALUE
: This setting selects the FlexAnalog value to drive the instantaneous value of each GGIO4 ana-
log status value (GGIO4.MX.AnIn1.instMag.f).
•
ANALOG IN 1 DB
: This setting specifies the deadband for each analog value. Refer to IEC 61850-7-1 and 61850-7-3
for details. The deadband is used to determine when to update the deadbanded magnitude from the instantaneous
magnitude. The deadband is a percentage of the difference between the maximum and minimum values.
•
ANALOG IN 1 MIN
: This setting specifies the minimum value for each analog value. Refer to IEC 61850-7-1 and
61850-7-3 for details. This minimum value is used to determine the deadband. The deadband is used in the determina-
tion of the deadbanded magnitude from the instantaneous magnitude.
•
ANALOG IN 1 MAX
: This setting defines the maximum value for each analog value. Refer to IEC 61850-7-1 and
61850-7-3 for details. This maximum value is used to determine the deadband. The deadband is used in the determi-
nation of the deadbanded magnitude from the instantaneous magnitude.
Note that the
ANALOG IN 1 MIN
and
ANALOG IN 1 MAX
settings are stored as IEEE 754 / IEC 60559 floating point
numbers. Because of the large range of these settings, not all values can be stored. Some values may be rounded
to the closest possible floating point number.
GGIO4 ANALOG
CONFIGURATION
NUMBER OF ANALOG
POINTS IN GGIO4:
8
Range: 4 to 32 in steps of 4
MESSAGE
GGIO4 ANALOG 1
MEASURED VALUE
MESSAGE
GGIO4 ANALOG 2
MEASURED VALUE
MESSAGE
GGIO4 ANALOG 3
MEASURED VALUE
↓
MESSAGE
GGIO4 ANALOG 32
MEASURED VALUE
GGIO4 ANALOG 1
MEASURED VALUE
ANALOG IN 1 VALUE:
Off
Range: any FlexAnalog value
MESSAGE
ANALOG IN 1 DB:
0.000
Range: 0.000 to 100.000 in steps of 0.001
MESSAGE
ANALOG IN 1 MIN:
0.000
Range: –1000000000.000 to 1000000000.000 in steps
of 0.001
MESSAGE
ANALOG IN 1 MAX:
0.000
Range: –1000000000.000 to 1000000000.000 in steps
of 0.001
NOTE
Содержание UR T60
Страница 10: ...x T60 Transformer Protection System GE Multilin TABLE OF CONTENTS ...
Страница 14: ...xiv T60 Transformer Protection System GE Multilin 0 1 BATTERY DISPOSAL 0 BATTERY DISPOSAL 0 ...
Страница 34: ...1 20 T60 Transformer Protection System GE Multilin 1 5 USING THE RELAY 1 GETTING STARTED 1 ...
Страница 436: ...5 298 T60 Transformer Protection System GE Multilin 5 10 TESTING 5 SETTINGS 5 ...
Страница 492: ...8 18 T60 Transformer Protection System GE Multilin 8 3 ENERVISTA SECURITY MANAGEMENT SYSTEM 8 SECURITY 8 ...
Страница 510: ...9 18 T60 Transformer Protection System GE Multilin 9 6 COMMISSIONING TEST TABLES 9 COMMISSIONING 9 ...
Страница 678: ...C 30 T60 Transformer Protection System GE Multilin C 7 LOGICAL NODES APPENDIX C C ...
Страница 688: ...D 10 T60 Transformer Protection System GE Multilin D 1 IEC 60870 5 104 PROTOCOL APPENDIX D D ...
Страница 700: ...E 12 T60 Transformer Protection System GE Multilin E 2 DNP POINT LISTS APPENDIX E E ...