17-
32
750/760 Feeder Management Relay
GE Power Management
17.7 PROTECTION SCHEMES
17 COMMISSIONING
17
17.7.18 SENSITIVE GROUND DIRECTIONAL OVERCURRENT
The procedure to test this element is identical to that outlined for Section 17.7.12: NEUTRAL DIRECTIONAL
OVERCURRENT on page 17–28, except the operating current is the sensitive ground current.
17.7.19 NEGATIVE SEQUENCE TIME OVERCURRENT
The procedure to test this element is identical to that outlined for Section 17.7.3: PHASE TIME OVERCUR-
RENT 1 on page 17–21, with the following exceptions.
Current is injected into any one phase of the phase input terminals and the negative sequence current magni-
tude is 1/3 of the injected current. The element is not subject to the "phases required for operation" or “voltage
restrained time overcurrent” tests.
Blocking From Logic Inputs
1.
Inject current to cause a pickup.
2.
Assert a logic input to provide a "Block Neg Seq Time". The PICKUP indicator should immediately go out.
3.
Repeat steps 1 and 2 for logic input "Block All O/C" and “Block 1 TRIP Relay” as required.
17.7.20 NEGATIVE SEQUENCE INSTANTANEOUS OVERCURRENT
The procedure to test this element is identical to that outlined for Section 17.7.5: PHASE INSTANTANEOUS
OVERCURRENT 1 on page 17–24, with the following exceptions.
Current is injected into any one phase of the phase input terminals and the negative sequence current magni-
tude is 1/3 of the injected current. The element is not subject to the "phases required for operation" test and not
subject to the tests “linear reset timing” and “voltage restrained time overcurrent”.
Blocking From Logic Inputs
1.
Inject current to cause a pickup.
2.
Assert a logic input to provide a "Block Neg Seq Inst". The PICKUP indicator should immediately go out.
3.
Repeat steps 1 and 2 for logic input "Block All O/C" and “Block 1 TRIP Relay” as required.
17.7.21 NEGATIVE SEQUENCE DIRECTIONAL OVERCURRENT
The procedure to test this element is identical to that outlined for Section 17.7.7: PHASE DIRECTIONAL
OVERCURRENT on page 17–25, except the injected current must be a negative sequence current.
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Страница 144: ...10 14 750 760 Feeder Management Relay GE Power Management 10 10 MISCELLANEOUS FUNCTIONS 10 S3 LOGIC INPUTS 10 ...
Страница 152: ...11 8 750 760 Feeder Management Relay GE Power Management 11 3 OUTPUT RELAYS 3 7 AUXILIARY 11 S4 OUTPUT RELAYS 11 ...
Страница 216: ...12 64 750 760 Feeder Management Relay GE Power Management 12 9 BREAKER FAILURE 12 S5 PROTECTION 12 ...
Страница 484: ...17 78 750 760 Feeder Management Relay GE Power Management 17 10 PLACING THE RELAY IN SERVICE 17 COMMISSIONING 17 ...
Страница 488: ...A 4 750 760 Feeder Management Relay GE Power Management A 1 FIGURES AND TABLES APPENDIXA A ...
Страница 490: ...B 2 750 760 Feeder Management Relay GE Power Management B 1 EU DECLARATION OF CONFORMITY APPENDIXB B ...
Страница 492: ...C 2 750 760 Feeder Management Relay GE Power Management C 1 WARRANTY INFORMATION APPENDIXC C ...
Страница 502: ...x 750 760 Feeder Management Relay GE Power Management INDEX ...
Страница 503: ...GE Power Management 750 760 Feeder Management Relay NOTES ...