GE Multilin
F60 Feeder Protection System
5-133
5 SETTINGS
5.5 GROUPED ELEMENTS
5
b) NEGATIVE SEQUENCE TIME OVERCURRENT
(ANSI 51_2)
PATH: SETTINGS
Ø
GROUPED ELEMENTS
ÖØ
SETTING GROUP 1(6)
ÖØ
NEGATIVE SEQUENCE CURRENT
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NEG SEQ TOC1(2)
The negative-sequence time overcurrent element may be used to determine and clear unbalance in the system. The input
for calculating negative-sequence current is the fundamental phasor value.
Two methods of resetting operation are available; “Timed” and “Instantaneous” (refer to the
Inverse Time Overcurrent Char-
acteristics
sub-section for details on curve setup, trip times and reset operation). When the element is blocked, the time
accumulator will reset according to the reset characteristic. For example, if the element reset characteristic is set to “Instan-
taneous” and the element is blocked, the time accumulator will be cleared immediately.
Figure 5–62: NEGATIVE SEQUENCE TOC1 SCHEME LOGIC
NEG SEQ TOC1
NEG SEQ TOC1
FUNCTION: Disabled
Range: Disabled, Enabled
MESSAGE
NEG SEQ TOC1 SIGNAL
SOURCE: SRC 1
Range: SRC 1, SRC 2
MESSAGE
NEG SEQ TOC1
PICKUP: 1.000 pu
Range: 0.000 to 30.000 pu in steps of 0.001
MESSAGE
NEG SEQ TOC1
CURVE: IEEE Mod Inv
Range: see OVERCURRENT CURVE TYPES table
MESSAGE
NEG SEQ TOC1
TD MULTIPLIER: 1.00
Range: 0.00 to 600.00 in steps of 0.01
MESSAGE
NEG SEQ TOC1
RESET: Instantaneous
Range: Instantaneous, Timed
MESSAGE
NEG SEQ TOC1 BLOCK:
Off
Range: FlexLogic™ operand
MESSAGE
NEG SEQ TOC1
TARGET: Self-reset
Range: Self-reset, Latched, Disabled
MESSAGE
NEG SEQ TOC1
EVENTS: Disabled
Range: Disabled, Enabled
FLEXLOGIC OPERANDS
NEG SEQ TOC1 FUNCTION:
NEG SEQ TOC1 PICKUP:
NEG SEQ TOC1 CURVE:
NEG SEQ TOC1 TD MULTIPLIER:
NEG SEQ TOC1 RESET:
NEG SEQ TOC1 INPUT:
NEG SEQ TOC1 SOURCE:
NEG SEQ TOC1 BLOCK:
NEG SEQ TOC1 DPO
NEG SEQ TOC1 OP
NEG SEQ TOC1 PKP
AND
827057A4.CDR
SETTING
SETTING
Enabled=1
Disabled=0
SETTING
SETTING
Neg Seq
Off=0
t
NEG SEQ PICKUP
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RUN
Summary of Contents for F60 UR Series
Page 2: ......
Page 4: ......
Page 30: ...1 20 F60 Feeder Protection System GE Multilin 1 5 USING THE RELAY 1 GETTING STARTED 1 ...
Page 48: ...2 18 F60 Feeder Protection System GE Multilin 2 2 SPECIFICATIONS 2 PRODUCT DESCRIPTION 2 ...
Page 126: ...4 30 F60 Feeder Protection System GE Multilin 4 2 FACEPLATE INTERFACE 4 HUMAN INTERFACES 4 ...
Page 354: ...5 228 F60 Feeder Protection System GE Multilin 5 9 TESTING 5 SETTINGS 5 ...
Page 382: ...6 28 F60 Feeder Protection System GE Multilin 6 5 PRODUCT INFORMATION 6 ACTUAL VALUES 6 ...
Page 398: ...8 8 F60 Feeder Protection System GE Multilin 8 2 FAULT LOCATOR 8 THEORY OF OPERATION 8 ...
Page 414: ...A 14 F60 Feeder Protection System GE Multilin A 1 PARAMETER LIST APPENDIXA A ...
Page 492: ...B 78 F60 Feeder Protection System GE Multilin B 4 MEMORY MAPPING APPENDIXB B ...
Page 530: ...D 10 F60 Feeder Protection System GE Multilin D 1 IEC 60870 5 104 APPENDIXD D ...
Page 542: ...E 12 F60 Feeder Protection System GE Multilin E 2 DNP POINT LISTS APPENDIXE E ...
Page 558: ...x F60 Feeder Protection System GE Multilin INDEX ...