ABB RELION 670 Series Commissioning Manual page 123

Line differential protection version 2.1 iec
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1MRK 505 345-UEN B
V
EQUATION14058 V1 EN-US
frequency of V
I
50
s
EQUATION14059 V1 EN-US
∠I
50s
frequency of I
It
fs
EQUATION14062 V1 EN-US
∠I
tfs
frequency of I
Check that the service values (VOLTAGE, CURRENT, R(%), X(%)) are according to the
injected quantities and that ROTORANG is close to 0 rad.
For this particular injection the service values are:
Note that these values identify a point outside the lens characteristic, even if it is close to the
point RE. Neither START nor TRIP is issued.
Execution of the dynamic test
The test may be performed by using two states of a sequence tool that is a basic feature of
test sets.
State 1: pre-test condition.
Steady voltage and current are applied in order to get a steady high impedance. This is a
point in the plane R-X that is far away from the lens characteristic. Define the following
three-phase symmetrical quantities (the phase angle is related to phase L1):
V
ts
EQUATION14057 V1 EN-US
V
EQUATION14058 V1 EN-US
frequency of V
I
50s
I
=0 A
tfs
State 2: main test step.
Define the following three-phase symmetrical quantities (the phase angle is related to
phase L1):
Commissioning manual
ForwardX
arctan
=
 =
ts
ForwardR
= 50 Hz
ts
I
1
CTs
I
10459
=
×
=
×
50
I
9000
CTp
=0°
= 50 Hz
50s
I
1
CTs
I
10459
=
×
=
×
tf
I
9000
CTp
=0°
= 50 Hz
tfs
VOLTAGE = 13.12 kV
CURRENT = 20918 A
R = 9.01%
X = 65.27%
ROTORANG = 0.04 rad
V
VT s
,
1 1
.
V
1 1 11931
.
=
×
×
=
×
t FwdZ
,
V
VT p
,
ForwardX
arctan
=
 =
ts
ForwardR
= 50 Hz
ts
=0 A
59 33
.
arctan
82. . 14°
 =
8 19
.
= .
1 162
A
1 162
.
A
=
0 1
.
95 1
.
V
×
=
13 8
.
59 33
.
arctan
82. . 14°
 =
8 19
.
Testing functionality by secondary injection
(Equation 18)
(Equation 19)
(Equation 20)
GUID-0B73C849-107D-40DC-80BB-31CD441BF69A v1
(Equation 21)
(Equation 22)
Section 10
117

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