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GUID-77388095-4EE8-4915-A1D4-D0767D1E04F5 v1
C
B
BC
IEC09000160-3-en.vsd
A
IEC09000160 V3 EN-US
Figure 194:
Example of tapped line with Auto transformer
This application gives rise to a similar problem that was highlighted in section
, that is increased measured impedance due to fault
current infeed. For example, for faults between the T point and B station the
measured impedance at A and C will be:
Z
A
=Z
AT
+ ·Z
TF
I
A
+ I
C
I
A
DOCUMENT11524-IMG3509 V3 EN-US
(Equation 355)
Z
Z
Z
I
I
I
Z
U
U
C
Trf
CT
A
C
C
TF
=
+
+
+
⋅
⋅
2
1
2
DOCUMENT11524-IMG3510 V3 EN-US
(Equation 356)
Where:
Z
AT
and Z
CT
is the line impedance from the A respective C station to the T point.
I
A
and I
C
is fault current from A respective C station for fault between T and B.
U2/U1
Transformation ratio for transformation of impedance at U1 side of the transformer to
the measuring side U2 (it is assumed that current and voltage distance function is
taken from U2 side of the transformer).
Z
TF
is the line impedance from the T point to the fault (F).
Z
Trf
is transformer impedance.
Section 8
1MRK 506 369-UEN B
Impedance protection
372
Line distance protection REL670 2.2 IEC
Application manual
Summary of Contents for REL670 2.2 IEC
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