GE Multilin
G60 Generator Protection System
5-105
5 SETTINGS
5.5 FLEXLOGIC™
5
ELEMENT:
Generator
unbalance
GEN UNBAL STG1 PKP
GEN UNBAL STG1 DPO
GEN UNBAL STG1 OP
GEN UNBAL STG2 PKP
GEN UNBAL STG2 DPO
GEN UNBAL STG2 OP
GEN UNBAL PKP
GEN UNBAL DPO
GEN UNBAL OP
The Generator Unbalance Stage 1 element has picked up
The Generator Unbalance Stage 1 element has dropped out
The Generator Unbalance Stage 1 element has operated
The Generator Unbalance Stage 2 element has picked up
The Generator Unbalance Stage 2 element has dropped out
The Generator Unbalance Stage 2 element has operated
The Generator Unbalance element has picked up
The Generator Unbalance element has dropped out
The Generator Unbalance element has operated
ELEMENT:
Ground
instantaneous
overcurrent
GROUND IOC1 PKP
GROUND IOC1 OP
GROUND IOC1 DPO
Ground instantaneous overcurrent 1 has picked up
Ground instantaneous overcurrent 1 has operated
Ground instantaneous overcurrent 1 has dropped out
ELEMENT:
Ground time
overcurrent
GROUND TOC1 PKP
GROUND TOC1 OP
GROUND TOC1 DPO
Ground time overcurrent 1 has picked up
Ground time overcurrent 1 has operated
Ground time overcurrent 1 has dropped out
ELEMENT
Non-volatile latches
LATCH 1 ON
LATCH 1 OFF
Non-volatile latch 1 is ON (Logic = 1)
Non-volatile latch 1 is OFF (Logic = 0)
LATCH 2 to LATCH 16
Same set of operands as shown for LATCH 1
ELEMENT:
Loss of excitation
LOSS EXCIT STG1 PKP
LOSS EXCIT STG2 PKP
LOSS EXCIT STG1 DPO
LOSS EXCIT STG2 DPO
LOSS EXCIT STG1 OP
LOSS EXCIT STG2 OP
LOSS EXCIT PKP
LOSS EXCIT DPO
LOSS EXCIT OP
Stage 1 of the loss of excitation element has picked up
Stage 2 of the loss of excitation element has picked up
Stage 1 of the loss of excitation element has dropped out
Stage 2 of the loss of excitation element has dropped out
Stage 1 of the loss of excitation element has operated
Stage 2 of the loss of excitation element has operated
The loss of excitation element has picked up
The loss of excitation element has dropped out
The loss of excitation element has operated
ELEMENT:
Negative-sequence
directional
overcurrent
NEG SEQ DIR OC1 FWD
NEG SEQ DIR OC1 REV
NEG SEQ DIR OC2 FWD
NEG SEQ DIR OC2 REV
Negative-sequence directional overcurrent 1 forward has operated
Negative-sequence directional overcurrent 1 reverse has operated
Negative-sequence directional overcurrent 2 forward has operated
Negative-sequence directional overcurrent 2 reverse has operated
ELEMENT:
Negative-sequence
overvoltage
NEG SEQ OV1 PKP
NEG SEQ OV1 DPO
NEG SEQ OV1 OP
Negative-sequence overvoltage element has picked up
Negative-sequence overvoltage element has dropped out
Negative-sequence overvoltage element has operated
NEG SEQ OV2...
Same set of operands as shown for NEG SEQ OV1
ELEMENT:
Neutral
instantaneous
overcurrent
NEUTRAL IOC1 PKP
NEUTRAL IOC1 OP
NEUTRAL IOC1 DPO
Neutral instantaneous overcurrent 1 has picked up
Neutral instantaneous overcurrent 1 has operated
Neutral instantaneous overcurrent 1 has dropped out
ELEMENT:
Neutral overvoltage
NEUTRAL OV1 PKP
NEUTRAL OV1 DPO
NEUTRAL OV1 OP
Neutral overvoltage element 1 has picked up
Neutral overvoltage element 1 has dropped out
Neutral overvoltage element 1 has operated
ELEMENT:
Neutral time
overcurrent
NEUTRAL TOC1 PKP
NEUTRAL TOC1 OP
NEUTRAL TOC1 DPO
Neutral time overcurrent 1 has picked up
Neutral time overcurrent 1 has operated
Neutral time overcurrent 1 has dropped out
ELEMENT:
Neutral directional
overcurrent
NTRL DIR OC1 FWD
NTRL DIR OC1 REV
Neutral directional overcurrent 1 forward has operated
Neutral directional overcurrent 1 reverse has operated
NTRL DIR OC2
Same set of operands as shown for NTRL DIR OC1
ELEMENT:
Overfrequency
OVERFREQ 1 PKP
OVERFREQ 1 OP
OVERFREQ 1 DPO
Overfrequency 1 has picked up
Overfrequency 1 has operated
Overfrequency 1 has dropped out
OVERFREQ 2 to 4
Same set of operands as shown for OVERFREQ 1
ELEMENT:
Synchrophasor
phasor data
concentrator
PDC NETWORK CNTRL 1
PDC NETWORK CNTRL 2
↓
PDC NETWORK CNTRL 16
Phasor data concentrator asserts control bit 1 as received via the network
Phasor data concentrator asserts control bit 2 as received via the network
↓
Phasor data concentrator asserts control bit 16 as received via the network
ELEMENT:
Phase directional
overcurrent
PH DIR1 BLK A
PH DIR1 BLK B
PH DIR1 BLK C
PH DIR1 BLK
Phase A directional 1 block
Phase B directional 1 block
Phase C directional 1 block
Phase directional 1 block
Table 5–9: G60 FLEXLOGIC™ OPERANDS (Sheet 3 of 9)
OPERAND TYPE
OPERAND SYNTAX
OPERAND DESCRIPTION
Содержание G60 UR Series
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Страница 12: ...xii G60 Generator Protection System GE Multilin TABLE OF CONTENTS ...
Страница 32: ...1 20 G60 Generator Protection System GE Multilin 1 5 USING THE RELAY 1 GETTING STARTED 1 ...
Страница 102: ...3 48 G60 Generator Protection System GE Multilin 3 4 MANAGED ETHERNET SWITCH MODULES 3 HARDWARE 3 ...
Страница 132: ...4 30 G60 Generator Protection System GE Multilin 4 3 FACEPLATE INTERFACE 4 HUMAN INTERFACES 4 ...
Страница 392: ...5 260 G60 Generator Protection System GE Multilin 5 10 TESTING 5 SETTINGS 5 ...
Страница 418: ...6 26 G60 Generator Protection System GE Multilin 6 5 PRODUCT INFORMATION 6 ACTUAL VALUES 6 ...
Страница 446: ...8 18 G60 Generator Protection System GE Multilin 8 3 ENERVISTA SECURITY MANAGEMENT SYSTEM 8 SECURITY 8 ...
Страница 452: ...9 6 G60 Generator Protection System GE Multilin 9 1 PHASE DISTANCE THROUGH POWER TRANSFORMERS 9 THEORY OF OPERATION 9 ...
Страница 482: ...A 12 G60 Generator Protection System GE Multilin A 1 PARAMETER LISTS APPENDIXA A ...
Страница 604: ...D 10 G60 Generator Protection System GE Multilin D 1 IEC 60870 5 104 APPENDIXD D ...
Страница 616: ...E 12 G60 Generator Protection System GE Multilin E 2 DNP POINT LISTS APPENDIXE E ...
Страница 634: ...x G60 Generator Protection System GE Multilin INDEX ...