GE Power Management
750/760 Feeder Management Relay
17-
45
17 COMMISSIONING
17.8 MONITORING
17
10. Program the test with the following fault voltages and currents.
V
an
= 62.2
∠
358°;
V
bn
= 61.0
∠
244°;
V
cn
= 67.4
∠
122°;
I
a
= 10.3
∠
313°;
I
b
= 10.3
∠
133°;
I
c
= 2.9
∠
90°
This fault is phase A to B, placed 9.0 km from the relay.
11. Inject the prefault voltages and currents, then apply the fault. The relay should trip and determine the type
of fault (A-B), the distance to the fault (9.0 km) and the reactance to the fault (4.91
Ω
).
12. Program the test with the following fault voltages and currents.
V
an
= 60.3
∠
0°;
V
bn
= 60.3
∠
240°;
V
cn
= 60.3
∠
120°;
I
a
= 10.8
∠
283°;
I
b
= 10.8
∠
163°;
I
c
= 10.8
∠
43°
This fault is phase A to B to C, placed 10.0 km from the relay.
13. Inject the prefault voltages and currents, then apply the fault. The relay should trip and determine the type
of fault (A-B-C), the distance to the fault (10.0 km) and the reactance to the fault (5.45
Ω
).
17.8.4 CURRENT DEMAND
Test Connections per Figure 17–1: RELAY TEST WIRING – WYE CONNECTION or Figure 17–2: RELAY
TEST WIRING – DELTA CONNECTION on page 17–4.
1.
Clear demand data registers before starting this test.
2.
Inject a fixed value of current. Monitor the actual value of the measured demand, and note the level at
which the feature generates an output. Turn the current off.
Indications and Operations caused by the various Functions are as outlined under Phase Time O/C,
with the following exception:
There is no Trip function for this element.
17.8.5 REAL POWER DEMAND
Test Connections per Figure 17–1: RELAY TEST WIRING – WYE CONNECTION or Figure 17–2: RELAY
TEST WIRING – DELTA CONNECTION on page 17–4.
1.
Clear demand data registers before starting this test.
2.
Inject a fixed value of watts. Monitor the actual value of the measured demand, and note the level at which
the feature generates an output. Turn the current off.
Indications and Operations caused by the various Functions are as outlined under Phase Time O/C,
with the following exception:
There is no Trip function for this element.
17.8.6 REACTIVE POWER DEMAND
Test Connections per Figure 17–1: RELAY TEST WIRING – WYE CONNECTION or Figure 17–2: RELAY
TEST WIRING – DELTA CONNECTION on page 17–4.
1.
Clear demand data registers before starting this test.
2.
Inject a fixed value of vars. Monitor the actual value of the measured demand, and note the level at which
the feature generates an output. Turn the current off.
Indications and Operations caused by the various Functions are as outlined under Phase Time O/C,
with the following exception.
There is no Trip function for this element.
Содержание 750
Страница 2: ......
Страница 4: ......
Страница 124: ...8 14 750 760 Feeder Management Relay GE Power Management 8 12 INSTALLATION 8 S1 RELAY SETUP 8 ...
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 ...