ABB Relion 670 Series Commissioning Manual page 121

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1MRK 505 372-UUS Rev. K
1.
Simulate normal operating conditions with the three-phase currents in phase with their
corresponding phase voltages and with all of them equal to their rated values.
2.
Slowly decrease the measured voltage in one phase until the BLKV signal appears.
3.
Record the measured voltage and calculate the corresponding negative-sequence voltage
according to the equation (observe that the voltages in the equation are phasors):
×
3
EQUATION1818-ANSI V1 EN-US
Where:
V V
EQUATION1820-ANSI V1 EN-US
a
IECEQUATION00022 V2 EN-US
4.
Compare the result with the set value of the negative-sequence operating voltage (consider that the
set value 3V2PU is in percentage of the base voltage VBase).
5.
Repeat steps
signal disappears.
6.
Record the measured current and calculate the corresponding negative-sequence current
according to the equation (observe that the currents in the equation are phasors):
×
3
ANSIEQUATION00021 V1 EN-US
Where:
I
ANSIEQUATION00020 V1 EN-US
a
IECEQUATION00022 V2 EN-US
7.
Compare the result with the set value of the negative-sequence operating current. Consider that
the set value 3I2< is in percentage of the base current IBase.
10.8.1.3
Measuring the trip value for the zero-sequence function
Measure the trip value for the zero-sequence function, if included in the IED.
1.
Simulate normal operating conditions with the three-phase currents in phase with their
corresponding phase voltages and with all of them equal to their rated values.
2.
Slowly decrease the measured voltage in one phase until the BLKV signal appears.
3.
Record the measured voltage and calculate the corresponding zero-sequence voltage according to
the equation (observe that the voltages in the equation are phasors):
Busbar protection REB670
Commissioning manual
2
=
+
×
+ ×
V
V
a V
a V
2
A
B
C
V
and
A
B
C
p ×
2
j
= ×
= -
+
1
e
0, 5
.
j
3
1
and 2. Then slowly increase the measured current in one phase until the BLKV
=
+
×
+ ×
2
I
I
a
I
a I
2
A
B
C
,
I and I
A
B
C
p ×
2
j
= ×
= -
+
.
1
e
0, 5
j
3
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are the measured phase voltages
3
2
are the measured phase currents
3
2
Section 10
Testing functionality by secondary injection
(Equation 23)
(Equation 24)
M1405-72 v11
115

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