ABB RET650 Technical Manual page 95

Relion 650 series transformer protection
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1MRK 504 135-UEN A
Technical manual
é
IDL
1
ù
é
IL
1_ 1
W
ù
ê
ú
ê
ú
=
×
+
IDL
2
A IL
2 _ 1
W
ê
ú
ê
ú
ê
ú
ê
ú
IDL
3
IL
3 _ 1
W
ë
û
ë
û
1
2
EQUATION1556 V2 EN
where:
1.
is the resulting Differential Currents
2.
is the current contribution from the W1 side
3.
is the current contribution from the W2 side
4.
is the current contribution from the W3 side
and where, for equation
1
and equation 2:
IDL1
is the fundamental frequency differential current in phase L1 (in W1 side primary amperes)
IDL2
is the fundamental frequency differential current in phase L2 (in W1 side primary amperes)
IDL3
is the fundamental frequency differential current in phase L3 (in W1 side primary amperes)
IL1_W1
is the fundamental frequency phase current in phase L1 on the W1 side
IL2_W1
is the fundamental frequency phase current in phase L2 on the W1 side
IL3_W1
is the fundamental frequency phase current in phase L3 on the W1 side
IL1_W2
is the fundamental frequency phase current in phase L1 on the W2 side
IL2_W2
is the fundamental frequency phase current in phase L2 on the W2 side
IL3_W2
is the fundamental frequency phase current in phase L3 on the W2 side
IL1_W3
is the fundamental frequency phase current in phase L1 on the W3 side
IL2_W3
is the fundamental frequency phase current in phase L2 on the W3 side
IL3_W3
is the fundamental frequency phase current in phase L3 on the W3 side
Ur_W1
is transformer rated phase-to-phase voltage on the W1 side (setting parameter)
Ur_W2
is transformer rated phase-to-phase voltage on the W2 side (setting parameter)
Ur_W3
is transformer rated phase-to-phase voltage on the W3 side (setting parameter)
A, B and C
are three by three matrices with numerical coefficients
Values of the matrix A, B and C coefficients depend on:
1.
The Power transformer winding connection type, such as star (Y/y) or delta (D/
d)
2.
The Transformer vector group such as Yd1, Dy11, YNautod5, Yy0d5 and so on,
which introduce phase displacement between individual windings currents in
multiples of 30°.
3.
The Settings for elimination of zero sequence currents for the individual
windings.
é
IL
1_
W
2
ù
Un W
_
2
ê
ú
× ×
+
B
IL
2 _
W
2
ê
ú
Un W
_ 1
ê
ú
IL
3 _
W
2
ë
û
3
Section 6
Differential protection
é
IL
1_
W
3
ù
Un W
_
3
ê
ú
× ×
C
IL
2 _
W
3
ê
ú
Un W
_ 1
ê
ú
IL
3 _
W
3
ë
û
4
(Equation 2)
89

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