Earth Fault Protection; Functionality; Principle Of Operation - ABB REF601 Applications Manual

Feeder protection and control feeder protection
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1MDU07212-YN Rev. C
4.2
4.2.1
4.2.2
REF601 / REJ601
Application Manual
Table 5:
Setting ranges Non-directional overcurrent protection, High stage 3I>>, 50-1
Description
Setting range of pick-up current I>>
Operation mode
Operate time delay (DMT) t >>
Reset ratio
Reset time
Trig CBFP
Table 6:
Setting ranges Non-directional overcurrent protection, Instantaneous stage 3I>>>, 50-2
Description
Setting range of pick-up current I>>>
Operation mode
Operate time delay (DMT) t >>>
Reset ratio
Reset time
Trig CBFP

Earth Fault Protection

Functionality

The earth-fault protection function is used as non-directional earth-fault protection
for feeders.
The earth current can be calculated internally or measured externally by core
balance current transformer.
The operate time characteristics for low stage can be selected to be either definite
time (DT) or inverse definite minimum time (IDMT). The instantaneous stage
always operates with the definite time (DT) characteristics.

Principle of Operation

The earth fault protection function continuously measures the neutral current of the
protected object. The current is evaluated by the low stage (I0> / 51N) and
instantaneous stage (I0>> / 50N) of earth fault over current functions.
On occurrence of fault, fulfilling the trip condition of respective stage, the LED
"Trip" and "Trip Io" will be activated. Additional the output relays (Trip and
signalization) will be activated according the binary output configuration.
Each of the stages could be blocked by settings or via binary input of the relay.
Protection and Control Function
Value
0.2...25 x In in steps 0.001, infinite for CT variant
0.2...20 x In in steps 0. 001, infinite for sensor variant
Definite time
0.04...64 sec in steps of 0.01
0.98
40
msec
Yes / No
Value
0.5...25 x In in steps 0.001, infinite for CT variant
0.5...20 x In in steps 0. 001, infinite for sensor variant
Definite time
0.03...64 sec in steps of 0.01
0.98
40 msec
Yes / No
Section 4
17

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