GE Multilin
D60 Line Distance Protection System
8-23
8 THEORY OF OPERATION
8.5 SINGLE-POLE TRIPPING
8
Depending on response times, the actual trip is initiated either by zone 1 or by the POTT scheme. At the moment
TRIP 1-
POLE
operand is asserted, the phase selector resets and no other trip action could take place. After the trip command is
issued all the picked up elements are forced to reset by the open pole detector.
The
TRIP 1-POLE
operand initiates automatically a single-pole autoreclose. The autoreclose is started and asserts the
AR
RIP
operand. This operand keeps blocking the phase selector so that it does not respond to any subsequent events. At the
same time the operand removes zero-sequence directional supervision from ground distance zones 2 and 3 so that they
could respond to a single-line-to-ground fault during open pole conditions.
The
AR FORCE 3-P TRIP
operand is asserted 1.25 cycles following autoreclose initiation. This operand acts as an enabler
for any existing trip request. In this case none of the protection elements is picked up at this time, therefore no more trips
are initiated.
When the recloser dead time interval is complete it signals the breaker control element to close the breaker. The breaker
control element operates output relays to close the breaker.
When pole A of the breaker closes this new status is reported to the breaker control element, which transfers this data to
the breaker failure, autorecloser, open pole detector and trip output elements. The response at breaker failure is dependent
on the programming of that element. The response at the autorecloser is not relevant to this discussion. At the open pole
detector, the blocking signals to protection elements are de-asserted.
If the fault was transient the reset time would expire at the autorecloser and the
AR FORCE 3-P TRIP
and
RIP
outputs would
be de-asserted, returning all features to the state described at the beginning of this description.
If the fault was permanent appropriate protection elements would detect it and place a trip request for the trip output ele-
ment. As the
AR FORCE 3-P TRIP
is still asserted, the request is executed as a three-pole trip.
The response of the system from this point is as described above for the second trip, except the autorecloser will go to lock-
out upon the next initiation (depending on the number of shots programmed).
c) SLG FAULT EVOLVING INTO LLG
When an AG fault occurs the events unfold initially as in the previous example. If the fault evolves quickly, the phase selec-
tor will change its initial assessment from AG to ABG fault and when the trip request is placed either by the zone 1 or the
POTT scheme, a three-pole trip will be initiated. If this is the case, all three
TRIP PHASE A
,
B
and
C
operands will be
asserted. The command is passed to the breaker control element and results in a three-pole trip. At the same time the
recloser is initiated as per settings of the trip output. As the
TRIP 3-POLE
operand is asserted (not the
TRIP 1-POLE
operand)
the open pole is not activated. Because the
AR RIP
in progress is asserted, the phase selector is blocked as well.
If the fault evolves slowly, the sequence is different: The relay trips phase A as in the previous example. The phase selector
resets, the open pole detector is activated and forces the zone 1 and zone 2 AG, AB, CA and negative-sequence overcur-
rent elements to reset. If the zone 1 BG element picks up, or the zone 2 BG element picks up resulting in operation of the
POTT scheme, no trip command will be issued until the
AR FORCE 3-P TRIP
is asserted. This happens 1.25 cycles after the
first trip. If at this time or any time later a request for trip is placed (due to an evolving fault), a three-pole trip is initiated. The
TRIP 1-POLE
operand is de-asserted by the
TRIP 3-POLE
operand, resetting the open pole detector. Shortly all three-poles
are opened.
When the dead time expires, the recloser signals the breaker control to close the breaker. At this time all the protection ele-
ments are operational, as the open pole detector is not blocking any elements. If the line-side VTs are used, the line pickup
element is armed as well. If there is a fault on the line, these elements will pickup the fault and issue next request for trip.
This request results in three-pole trip as the
AR FORCE 3-P TRIP
is still asserted.
The response of the system from this point is as described above for the second trip, except the recloser will go to lockout
upon the next initiation (depending on the number of shots programmed).
Содержание D60
Страница 61: ...GE Multilin D60 Line Distance Protection System 2 31 2 PRODUCT DESCRIPTION 2 3 SPECIFICATIONS 2 ...
Страница 62: ...2 32 D60 Line Distance Protection System GE Multilin 2 3 SPECIFICATIONS 2 PRODUCT DESCRIPTION 2 ...
Страница 102: ...3 40 D60 Line Distance Protection System GE Multilin 3 3 DIRECT INPUT AND OUTPUT COMMUNICATIONS 3 HARDWARE 3 ...
Страница 134: ...4 32 D60 Line Distance Protection System GE Multilin 4 3 FACEPLATE INTERFACE 4 HUMAN INTERFACES 4 ...
Страница 508: ...5 374 D60 Line Distance Protection System GE Multilin 5 10 TESTING 5 SETTINGS 5 ...
Страница 538: ...6 30 D60 Line Distance Protection System GE Multilin 6 5 PRODUCT INFORMATION 6 ACTUAL VALUES 6 ...
Страница 610: ...10 8 D60 Line Distance Protection System GE Multilin 10 2 BATTERIES 10 MAINTENANCE 10 ...
Страница 622: ...A 12 D60 Line Distance Protection System GE Multilin A 1 PARAMETER LISTS APPENDIX A A ...
Страница 745: ...GE Multilin D60 Line Distance Protection System B 123 APPENDIX B B 4 MEMORY MAPPING B ...
Страница 746: ...B 124 D60 Line Distance Protection System GE Multilin B 4 MEMORY MAPPING APPENDIX B B ...
Страница 776: ...C 30 D60 Line Distance Protection System GE Multilin C 7 LOGICAL NODES APPENDIX C C ...
Страница 792: ...E 10 D60 Line Distance Protection System GE Multilin E 1 IEC 60870 5 104 PROTOCOL APPENDIX E E ...
Страница 804: ...F 12 D60 Line Distance Protection System GE Multilin F 2 DNP POINT LISTS APPENDIX F F ...
Страница 826: ...xii D60 Line Distance Protection System GE Multilin INDEX ...