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I.L. 40-385.5
A-9
Change the LED mode to “TEST” and select the
“RS1” function. Push the ENTER button; the EN-
TER LED should be “ON”. Repeat Step 4 with the
ENTER button depressed. The relay should not
trip.
Step 5.
Apply AG reversed fault (i.e., I
a
leads V
a
by 105 degrees). The CARRY SEND contacts
should be “closed” and the CARRY STOP
contacts should be “open”. (I
a
should be > 3 A for
the Zone 3 setting of 6 ohms.)
Step 6.
Change the LED mode to TEST and se-
lect the function “TK”. Push the ENTER button;
the ENTER LED should be “ON” and the CARRY
SEND contacts should be closed.
Step 7.
In order to determine setting accuracy (6
ohms), the forward directional ground unit must
be disabled. Set FDGT = BLK. Repeat preceding
Step 4 of the Pilot Acceptance Test, with a trip in-
put current (I
a
) of 3 Amps (
±
5%).
Step 8.
Set the Forward Directional Ground Timer
(FDGT) from 0 to 15 cycles. Repeat Step 4 with
I
a
= 1.5 A. The relay should be tripped after the
delay time of FDGT.
NOTE: The FDOG trip is determined by the IOM
setting. It trips if 3I
0
>I
OM
and the forward
ground directional unit picks up.
Step 9.
In order to perform the Breaker Failure
Reclose Block Test, change the setting of FDGT
= 0 and BFRB = NO. Repeat test Step 4; RB con-
tacts (TB3/1 and TB3/2) should not close.
Change BFRB to YES and repeat the test. The
RB contacts should be closed with a time delay
between 150 ms and 200 ms.
1.2.3
PUTT or POTT Schemes
Step 10. Change the setting to STYP = PUTT (for
underreach scheme) or STYP = POTT (for over-
reach scheme). In order to determine setting ac-
curacy (6 ohms), the forward directional ground
unit must be disabled. Set FDGT = BLK. Apply a
rated voltage to RCVR #1 terminals TB5/7(+) and
TB5/8(-), and apply an AG fault as shown in Step
10 of the Non-Pilot Acceptance Test. The trip
contact A should be closed at the input I
a
= 3A
(±
5%); the target should show “PLTG AG”, and
the CARRY SEND contact should be “closed” for
POTT setting. Do not test carry STOP for POTT
and PUTT schemes.
Step 11. Apply a reversed AG fault (I
a
leads V
a
by
105
°
). The relay should not trip, and the CARRY
SEND contact should stay “open”.
Step 12. Remove the voltage on RCVR #1. Apply a
forward AG fault as shown in Step 10. The trip
contacts should remain “open” for I
a
= 5A.
Step 13. Change the LED mode to TEST and se-
lect the function “RS1”. Push the ENTER button;
the ENTER LED should be “ON”. Repeat Step 12
with the ENTER button depressed. The relay
should trip.
Step 14. Repeat steps 8 and 9 for FDGT and BFRB
tests, by using Step 10 with Ia = 1.5 A.
1.2.4
Weakfeed Scheme
Step 15. This function is for POTT only. In addition
to the setting changes in Step 2, change the fol-
lowing settings:
• STYP
POTT
• WFEN
YES
• Z3G
4.5
• Z3P
4.5
• Z3FR
REV
Apply a rated voltage to PLT/ENA terminals TB5/
9(+) and TB5/10(-), also RCVR #1 terminals TB5/
7(+) and TB5/8(-).
With V
an
= V
bn
= V
cn
= 70 Vrms applied (as
shown in Figure A-1), the relay should operate
normally.
NOTE: Do not apply fault current.
Turn V
an
“OFF”; the relay should trip with a target
of WFT, and the Carrier Send contact (TB4-1 and
TB4-2) should close momentarily.
Reduce Van from 70 Vrms to 69Vrms and apply
a reverse AG fault current of 5A (i.e., I
a
leads V
an
by 105 degrees). Turn V
an
“OFF”; the relay
should not trip, and the Carrier Send contact
(TB4-1 and TB4-2) should stay open.
Содержание MDAR
Страница 84: ......
Страница 88: ...I L 40 385 5 A 16 Figure A 1 Test Connection for Single Phase to Ground Faults Sheet 1 of 4 1502B51 Sub 1 ...
Страница 89: ...I L 40 385 5 A 17 Figure A 2 Test Connection for Three Phase Faults 1502B51 Sub 1 Sheet 2 of 4 ...
Страница 90: ...I L 40 385 5 A 18 Figure A 3 Test Connection for Phase to Phase Faults 1502B51 Sub 1 Sheet 3 of 4 ...
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Страница 98: ...I L 40 385 5 A 26 I L 40 385 5 A 26 I L 40 385 5 A 26 Figure 5 MDAR REL 300 Relay Assembly sub 3 1502B21 ...
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Страница 105: ...I L 40 385 5 A 33 I L 40 385 5 A 33 I L 40 385 5 A 33 Figure 15 MDAR REL 300 Zone 1 Trip Logic sub 1 9659A66 ...
Страница 106: ...I L 40 385 5 A 34 I L 40 385 5 A 34 I L 40 385 5 A 34 Figure 16 MDAR REL 300 Zone 2 Trip Logic sub 1 9659A67 ...
Страница 107: ...I L 40 385 5 A 35 I L 40 385 5 A 35 I L 40 385 5 A 35 Figure 17 MDAR REL 300 Zone 3 Trip Logic sub 1 1504B04 ...
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Страница 112: ...I L 40 385 5 A 40 I L 40 385 5 A 40 I L 40 385 5 A 40 Figure 25 Load Loss Accelerated Trip Logic sub 2 1504B29 ...
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Страница 118: ...I L 40 385 5 A 46 I L 40 385 5 A 46 I L 40 385 5 A 46 Figure 35 Power Reversal sub 1 9654A17 ...
Страница 119: ...I L 40 385 5 A 47 I L 40 385 5 A 47 I L 40 385 5 A 47 Figure 36 Reverse Block Logic sub 1 9659A73 ...
Страница 120: ...I L 40 385 5 A 48 I L 40 385 5 A 48 I L 40 385 5 A 48 Figure 37 Unequal Pole Closing on Fault sub 1 9654A29 ...
Страница 121: ...I L 40 385 5 A 49 I L 40 385 5 A 49 I L 40 385 5 A 49 Figure 38 Simplified MDAR Version 2 60 SPT Logic sub 4 1504B32 ...
Страница 122: ...I L 40 385 5 A 50 I L 40 385 5 A 50 I L 40 385 5 A 50 Figure 39 MDAR Block Diagram sub 1 1611C12 ...
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