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GE Multilin
L90 Line Current Differential System
10-17
10 APPLICATION OF SETTINGS
10.5 PROTECTION SIGNALING SCHEMES
10
10.5PROTECTION SIGNALING SCHEMES
10.5.1 OVERVIEW
The L90 includes six common pilot-aided schemes:
•
direct under-reaching transfer trip (DUTT)
•
permissive under-reaching transfer trip (PUTT)
•
permissive over-reaching transfer trip (POTT)
•
hybrid permissive over-reaching transfer trip (Hybrid POTT)
•
directional comparison blocking
•
directional comparison unblocking
10.5.2 DIRECT UNDER-REACHING TRANSFER TRIP (DUTT)
This scheme uses an under-reaching Zone 1 distance element to key a transfer trip signal to the remote end(s), where on
receipt, the DUTT pilot scheme operates without any additional supervision.
For proper operation of the scheme the Zone 1 phase and ground distance elements must be enabled, configured and set
per rules of distance relaying.
The scheme generates an output operand (DUTT TX) that is used to transmit the signal to the remote end. Choices of com-
munications channel include Remote Inputs/Outputs and telecommunications interfaces. When used with telecommunica-
tions facilities the output operand should be assigned to operate an output contact connected to key the transmitter at the
interface.
Note that the same protection signaling may be used by a breaker failure scheme, in which case the signal can be sealed
in by breaker fail for a time longer than the auto-reclose “reclaim” time which then prevents auto-reclose when not required.
A provision for an optional seal-in of the send signal is made to cover those situations where PLC (Power Line Carrier) sig-
naling is used and the signal must be transmitted in a potentially noisy situation due to the fault.
The scheme output operand (DUTT OP) must be configured to interface with other relay functions, output contacts in par-
ticular, in order to make the scheme fully operational. Typically, the output operand should be programmed to initiate a trip,
breaker fail, and auto-reclose, and drive a user-programmable LED as per user application.
10.5.3 PERMISSIVE UNDER-REACHING TRANSFER TRIP (PUTT)
This scheme uses an under-reaching Zone 1 distance element to key a transfer trip signal to the remote end where it is
supervised by the over-reaching Zone 2 distance elements.
For proper operation of the scheme the Zone 1 and 2 phase and ground distance elements must be enabled, configured
and set per rules of distance relaying.
The scheme generates an output operand (PUTT TX) that is used to transmit the signal to the remote end. Choices of com-
munications channel include Remote Inputs/Outputs and telecommunications interfaces. When used with telecommunica-
tions facilities the output operand should be assigned to operate an output contact connected to key the transmitter at the
interface.
The PUTT RX PICKUP DELAY timer can be used to ride through spurious PLC receive signals.
The scheme output operand (PUTT OP) must be configured to interface with other relay functions, output contacts in partic-
ular, in order to make the scheme fully operational. Typically, the output operand should be programmed to initiate a trip,
breaker fail, and auto-reclose, and drive a user-programmable LED as per user application.
10.5.4 PERMISSIVE OVER-REACHING TRANSFER TRIP (POTT)
This scheme is intended for two-terminal line applications only.
This scheme uses an over-reaching Zone 2 distance element to essentially compare the direction to a fault at both the ends
of the line.
Содержание UR Series L90
Страница 14: ...xiv L90 Line Current Differential System GE Multilin 0 1 BATTERY DISPOSAL 0 BATTERY DISPOSAL 0 ...
Страница 68: ...2 34 L90 Line Current Differential System GE Multilin 2 4 SPECIFICATIONS 2 PRODUCT DESCRIPTION 2 ...
Страница 138: ...4 30 L90 Line Current Differential System GE Multilin 4 3 FACEPLATE INTERFACE 4 HUMAN INTERFACES 4 ...
Страница 604: ...9 58 L90 Line Current Differential System GE Multilin 9 6 FAULT LOCATOR 9 THEORY OF OPERATION 9 ...
Страница 652: ...A 16 L90 Line Current Differential System GE Multilin A 1 PARAMETER LISTS APPENDIX A A ...
Страница 772: ...B 120 L90 Line Current Differential System GE Multilin B 4 MEMORY MAPPING APPENDIX B B ...
Страница 802: ...C 30 L90 Line Current Differential System GE Multilin C 7 LOGICAL NODES APPENDIX C C ...
Страница 812: ...D 10 L90 Line Current Differential System GE Multilin D 1 IEC 60870 5 104 APPENDIX D D ...
Страница 824: ...E 12 L90 Line Current Differential System GE Multilin E 2 DNP POINT LISTS APPENDIX E E ...
Страница 834: ...F 10 L90 Line Current Differential System GE Multilin F 3 WARRANTY APPENDIX F F ...
Страница 846: ...xii L90 Line Current Differential System GE Multilin INDEX ...