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6.
Check that the START signal resets.
7.
Supply the IED with three-phase voltages at their rated values and frequency
20 mHz over the set value
StartFrequency
.
8.
Decrease the frequency with a 40 mHz step, applying it for a time that is at
least 10% longer than (
tDelay
+100ms).
9.
Measure the time delay of the
TRIP
signal, and compare it with the set value
tDelay
. Note that the measured time consists of the set value of the time delay
plus the minimum operate time of the start function (80 - 90 ms).
Extended testing
M16289-31 v6
1.
The test above can be repeated to check the time to reset.
2.
The tests above can be repeated to test the frequency dependent inverse time
characteristic.
Verification of the low voltage magnitude blocking
M16289-39 v7
1.
Check that the IED settings are appropriate, for example the
StartFrequency
,
UMin
, and the
tDelay
.
2.
Supply the IED with three-phase voltages at rated values.
3.
Slowly decrease the magnitude of the applied voltage, until the BLKDMAGN
signal appears.
4.
Note the voltage magnitude value and compare it with the set value
UMin
.
5.
Slowly decrease the frequency of the applied voltage, to a value below
StartFrequency
.
6.
Check that the START signal does not appear.
7.
Wait for a time corresponding to
tDelay
, make sure that the TRIP signal does
not appear.
11.7.1.2
Completing the test
M16289-57 v5
Continue to test another function or end the test by changing the
TESTMODE
setting to
Off
. Restore connections and settings to their original values, if they were
changed for testing purposes.
11.7.2
Overfrequency protection SAPTOF
M16290-2 v7
Prepare the IED for verification of settings outlined in Section
.
11.7.2.1
Verifying the settings
M16290-12 v2
Verification of START value and time delay to operate
M16290-14 v6
1MRK 505 378-UEN A
Section 11
Testing functionality by secondary injection
Line differential protection RED670 2.2 IEC
209
Commissioning manual
Summary of Contents for RED670 Relion 670 series
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