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Date Code 20010625
Testing, Troubleshooting, and Commissioning
13-13
SEL-311L Instruction Manual
Table 13.4: Negative-Sequence Restraint Element Dropout Test Results (Outer Radius)
Remote Current at Which R87L2 Deasserts
Remote
Current Angle
Min. Actual Max.
180 13.58 14.42
140 13.58 14.42
100 13.58 14.42
-100 13.58
14.42
-140 13.58
14.42
12. Apply the following currents:
Local Relay:
IA = 5 A
0 degrees
Remote Relay: IA = 5 A
0 degrees
13. In the local relay, use the
TAR R87L2 10000
command to display the R87L2
Relay Word bit 10,000 times, or use the front panel
TAR
command to display
Relay Word row 57. Ensure bit R87L2 is deasserted.
14. Increase the angle on the remote IA from zero until Relay Word bit R87L2 is
solidly asserted. Record the angle of IA required to solidly assert R87L2. Ensure
it is within the range expected:
80 degrees < _________ < 85 degrees
15. Decrease the angle on the remote IA from zero (more negative) until Relay Word
bit R87L2 is solidly asserted. Record the angle of IA required to solidly assert
R87LA. Ensure it is within the range expected:
-85 degrees < _________ < -80 degrees
R
ELAY
S
ELF
-T
ESTS
The relay runs a variety of self-tests. The relay takes the following corrective actions for out-of-
tolerance conditions (see Table 13.5):
v
Protection Disabled: The relay disables overcurrent elements and trip/close logic. All
output contacts are deenergized. The EN front-panel LED is extinguished.
v
ALARM Output: The ALARM output contact signals an alarm condition by going to its
deenergized state. If the ALARM output contact is a B contact (normally closed), it
closes for an alarm condition or if the relay is deenergized. If the ALARM output contact
is an A contact (normally open), it opens for an alarm condition or if the relay is
deenergized. Alarm condition signaling can be a single 5-second pulse (Pulsed) or
permanent (Latched).
Содержание SEL-311L
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