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GE Multilin
F60 Feeder Protection System
5-45
5 SETTINGS
5.2 PRODUCT SETUP
5
The table shows details about each scheme. Times are maximum values. Retransmitted messages can occur faster than
the times listed.
The configurable GOOSE feature is recommended for applications that require GOOSE data transfer between UR-series
IEDs and devices from other manufacturers. Fixed GOOSE is recommended for applications that require GOOSE data
transfer between UR-series IEDs.
IEC 61850 GOOSE messaging contains a number of configurable parameters, all of which must be correct to achieve the
successful transfer of data. It is critical that the configured datasets at the transmission and reception devices are an exact
match in terms of data structure, and that the GOOSE addresses and name strings match exactly. Manual configuration is
possible, but third-party substation configuration software may be used to automate the process. The EnerVista UR Setup
software can produce IEC 61850 ICD files and import IEC 61850 SCD files produced by a substation configurator (as out-
lined in the IEC 61850 appendix).
The following example illustrates the configuration required to transfer IEC 61850 data items between two devices. The
general steps required for transmission configuration are:
1.
Configure the transmission dataset.
2.
Configure the GOOSE service settings.
3.
Configure the data.
The general steps required for reception configuration are:
1.
Configure the reception dataset.
2.
Configure the GOOSE service settings.
3.
Configure the data.
Table 5–7: GOOSE RETRANSMISSION SCHEMES
SCHEME
SQ NUM
TIME FROM THE
EVENT
TIME BETWEEN
MESSAGES
COMMENT
TIME ALLOWED TO LIVE
IN MESSAGE
Aggressive
0
0 ms
0 ms
Event
2000 ms
1
4 ms
4 ms
T1
2000 ms
2
8 ms
4 ms
T1
2000 ms
3
16 ms
8 ms
T2
Heartbeat * 4.5
4
Heartbeat
Heartbeat
T0
Heartbeat * 4.5
5
Heartbeat
Heartbeat
T0
Heartbeat * 4.5
Medium
0
0 ms
0 ms
Event
2000 ms
1
16 ms
16 ms
T1
2000 ms
2
32 ms
16 ms
T1
2000 ms
3
64 ms
32 ms
T2
Heartbeat * 4.5
4
Heartbeat
Heartbeat
T0
Heartbeat * 4.5
5
Heartbeat
Heartbeat
T0
Heartbeat * 4.5
Relaxed
0
0 ms
0 ms
Event
2000 ms
1
100 ms
100 ms
T1
2000 ms
2
200 ms
100 ms
T1
2000 ms
3
700 ms
500 ms
T2
Heartbeat * 4.5
4
Heartbeat
Heartbeat
T0
Heartbeat * 4.5
5
Heartbeat
Heartbeat
T0
Heartbeat * 4.5
Heartbeat
0
0 ms
0 ms
Event
2000 ms
1
Heartbeat
Heartbeat
T1
2000 ms
2
Heartbeat
Heartbeat
T1
2000 ms
3
Heartbeat
Heartbeat
T2
Heartbeat * 4.5
4
Heartbeat
Heartbeat
T0
Heartbeat * 4.5
5
Heartbeat
Heartbeat
T0
Heartbeat * 4.5
Summary of Contents for F60
Page 10: ...x F60 Feeder Protection System GE Multilin TABLE OF CONTENTS ...
Page 30: ...1 20 F60 Feeder Protection System GE Multilin 1 5 USING THE RELAY 1 GETTING STARTED 1 ...
Page 138: ...4 28 F60 Feeder Protection System GE Multilin 4 2 FACEPLATE INTERFACE 4 HUMAN INTERFACES 4 ...
Page 454: ...5 316 F60 Feeder Protection System GE Multilin 5 10 TESTING 5 SETTINGS 5 ...
Page 500: ...7 14 F60 Feeder Protection System GE Multilin 7 1 COMMANDS 7 COMMANDS AND TARGETS 7 ...
Page 508: ...8 8 F60 Feeder Protection System GE Multilin 8 2 FAULT LOCATOR 8 THEORY OF OPERATION 8 ...
Page 522: ...10 12 F60 Feeder Protection System GE Multilin 10 6 DISPOSAL 10 MAINTENANCE 10 ...
Page 660: ...B 116 F60 Feeder Protection System GE Multilin B 4 MEMORY MAPPING APPENDIX B B ...
Page 706: ...E 10 F60 Feeder Protection System GE Multilin E 1 IEC 60870 5 104 APPENDIX E E ...
Page 718: ...F 12 F60 Feeder Protection System GE Multilin F 2 DNP POINT LISTS APPENDIX F F ...
Page 728: ...H 8 F60 Feeder Protection System GE Multilin H 2 ABBREVIATIONS APPENDIX H H Z Impedance Zone ...
Page 730: ...H 10 F60 Feeder Protection System GE Multilin H 3 WARRANTY APPENDIX H H ...