GE t60 Instruction Manual page 122

Ur series transformer management relay
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5.3 SYSTEM SETUP
Note that the delta winding currents leads the wye winding currents by 30°, (which is a type Yd11 in IEC nomenclature and
a type Y/d330 in GE Multilin nomenclature) which is in disagreement with the transformer nameplate. This is because the
physical connections and hence the equations used to calculate current for the delta winding have not changed. The trans-
former nameplate phase relationship information is only correct for a stated phase sequence.
It may be suggested that phase relationship for the ACB sequence can be returned the transformer nameplate values by
connecting source phases A, B and C to transformer terminals A, C, and B respectively. Although this restores the name-
plate phase shifts, it causes incorrect identification of phases B and C within the relay, and is therefore not recommended.
All information presented in this manual is based on connecting the relay phase A, B and C terminals to the power system
phases A, B, and C respectively. The transformer types and phase relationships presented are for a system phase
sequence of ABC, in accordance with the standards for power transformers. Users with a system phase sequence of ACB
5
must determine the transformer type for this sequence.
If a power system with ACB rotation is connected to the Wye winding terminals 1, 2, and 3, respectively, from a Y/d30 trans-
former, select a Power Rotation setting of ACB into the relay and enter data for the Y/d330 transformer type.
d) MAGNITUDE COMPENSATION
Transformer protection presents problems in the application of current transformers. CTs should be matched to the current
rating of each transformer winding, so that normal current through the power transformer is equal on the secondary side of
the CT on different windings. However, because only standard CT ratios are available, this matching may not be exact.
In our example, the transformer has a voltage ratio of 220 kV / 69 kV (i.e. about 3.188 to 1) and a compensating CT ratio is
500 A to 1500 A (i.e. 1 to 3). Historically, this would have resulted in a steady state current at the differential relay. Interpos-
ing CTs or tapped relay windings were used to minimize this error.
The T60 automatically corrects for CT mismatch errors. All currents are magnitude compensated to be in units of the CTs of
one winding before the calculation of differential and restraint quantities.
The reference winding (W
currents will be in per unit of nominal of the CTs on the reference winding. This is important to know, because the settings of
the operate characteristic of the percent differential element (pickup, breakpoint 1/2) are entered in terms of the same per
unit of nominal. The reference winding is chosen by the relay to be the winding which has the smallest margin of CT pri-
mary current with respect to winding rated current, meaning that the CTs on the reference winding will most likely begin to
saturate before those on other windings with heavy through currents. The characteristics of the reference winding CTs
determine how the percent differential element operate characteristic should be set.
The T60 determines the reference winding as follows:
1.
Calculate the rated current (I
Note: Enter the self-cooled MVA rating for the P
2.
Calculate the CT margin (I
3.
Choose the winding with the lowest CT margin:
In our example, the reference winding is chosen as follows:
[1] = 100 MVA / (√3 ⋅ 220 kV) = 262.4 A;
1.
I
rated
2.
I
[1] = 500 A / 262.4 A = 1.91; I
margin
5-44
I
A
I
B
Figure 5–16: PHASORS FOR ACB SEQUENCE
) is the winding to which all currents are referred. This means that the differential and restraint
ref
) for each winding: I
rated
) for each winding: I
margin
[2] = 1500 A / 836.7 A = 1.79
margin
T60 Transformer Management Relay
I
a
I
l
a
I
I
l
c
I
I
l
b
c
I
C
I
l
a
I
b
[w] / (√3 ⋅ V
[w] = P
rated
rated
setting
rated
[w] = CT
[w] / I
margin
primary
[2] = 100 MVA / (√3 ⋅ 69 kV) = 836.7 A
I
rated
5 SETTINGS
l
b
I
c
l
828718A1.CDR
[w]), w = 1, 2,... W
nominal
total
[w], w = 1, 2,... W
rated
total
GE Multilin

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