5-210
C70 Capacitor Bank Protection and Control System
GE Multilin
5.8 INPUTS/OUTPUTS
5 SETTINGS
5
The GOOSE analog input FlexAnalog™ values are available for use in other C70 functions that use FlexAnalog™ values.
5.8.12 IEC 61850 GOOSE INTEGERS
PATH: SETTINGS
ÖØ
INPUTS/OUTPUTS
ÖØ
IEC 61850 GOOSE UINTEGERS
ÖØ
GOOSE UINTEGER INPUT 1(16)
The IEC 61850 GOOSE uinteger inputs feature allows the transmission of FlexInteger™ values between any two UR-
series devices. The following settings are available for each GOOSE uinteger input.
•
UINTEGER 1 DEFAULT
: This setting specifies the value of the GOOSE uinteger input when the sending device is
offline and the
UINTEGER 1 DEFAULT MODE
is set to “Default Value”.This setting is stored as a 32-bit unsigned integer
number.
•
UINTEGER 1 DEFAULT MODE
: When the sending device is offline and this setting is “Last Known”, the value of the
GOOSE uinteger input remains at the last received value. When the sending device is offline and this setting value is
“Default Value”, then the value of the GOOSE uinteger input is defined by the
UINTEGER 1 DEFAULT
setting.
The GOOSE integer input FlexInteger™ values are available for use in other C70 functions that use FlexInteger™ values.
Table 5–23: GOOSE ANALOG INPUT BASE UNITS
ELEMENT
BASE UNITS
dcmA
BASE = maximum value of the
DCMA INPUT MAX
setting for the two transducers configured
under the +IN and –IN inputs.
FREQUENCY
f
BASE
= 1 Hz
PHASE ANGLE
ϕ
BASE
= 360 degrees (see the UR angle referencing convention)
POWER FACTOR
PF
BASE
= 1.00
RTDs
BASE = 100°C
SOURCE CURRENT
I
BASE
= maximum nominal primary RMS value of the +IN and –IN inputs
SOURCE POWER
P
BASE
= maximum value of V
BASE
×
I
BASE
for the +IN and –IN inputs
SOURCE THD & HARMONICS
BASE = 1%
SOURCE VOLTAGE
V
BASE
= maximum nominal primary RMS value of the +IN and –IN inputs
GOOSE UINTEGER
INPUT 1
UINTEGER 1
DEFAULT:
1000
Range: 0 to 429496295 in steps of 1
MESSAGE
UINTEGER 1
DEFAULT
MODE: Default Value
Range: Default Value, Last Known
Содержание UR Series C70
Страница 2: ......
Страница 10: ...x C70 Capacitor Bank Protection and Control System GE Multilin TABLE OF CONTENTS ...
Страница 30: ...1 20 C70 Capacitor Bank Protection and Control System GE Multilin 1 5 USING THE RELAY 1 GETTING STARTED 1 ...
Страница 124: ...4 30 C70 Capacitor Bank Protection and Control System GE Multilin 4 3 FACEPLATE INTERFACE 4 HUMAN INTERFACES 4 ...
Страница 344: ...5 220 C70 Capacitor Bank Protection and Control System GE Multilin 5 10 TESTING 5 SETTINGS 5 ...
Страница 396: ...8 18 C70 Capacitor Bank Protection and Control System GE Multilin 8 3 ENERVISTA SECURITY MANAGEMENT SYSTEM 8 SECURITY 8 ...
Страница 414: ...9 18 C70 Capacitor Bank Protection and Control System GE Multilin 9 1 OVERVIEW 9 THEORY OF OPERATION 9 ...
Страница 436: ...10 22 C70 Capacitor Bank Protection and Control System GE Multilin 10 4 SETTING EXAMPLE 10 APPLICATION OF SETTINGS 10 ...
Страница 547: ...GE Multilin C70 Capacitor Bank Protection and Control System B 79 APPENDIX B B 4 MEMORY MAPPING B ...
Страница 548: ...B 80 C70 Capacitor Bank Protection and Control System GE Multilin B 4 MEMORY MAPPING APPENDIXB B ...
Страница 586: ...D 10 C70 Capacitor Bank Protection and Control System GE Multilin D 1 OVERVIEW APPENDIXD D ...
Страница 598: ...E 12 C70 Capacitor Bank Protection and Control System GE Multilin E 2 DNP POINT LISTS APPENDIXE E ...