Summary And Conclusions - ABB RELION 650 Series Applications Manual

Transformer protection version 2.1
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Section 6
Differential protection
CT input channels used for the LV side CTs
Setting parameter
CTprim
CTsec
CTStarPoint
To compensate for delta connected CTs, see equation 16.
6. Assume GBASVAL:1 is used for winding 1 (W1, HV-side) base values: Set Ibase = 301 A (rated
current), Ubase= 115 kV (rated voltage).
7. Assume GBASVAL:2 is used for winding 2 (W2, LV-side) base values: Set Ibase = 1391 A (rated
current), Ubase= 24.9 kV (rated voltage).
8. Enter the following values for the general settings of the differential protection function,
see table14.
Table 14:
Setting parameter
GlobalBaseSelW1
GlobalBaseSelW2
ConnectTypeW1
ConnectTypeW2
ClockNumberW2
ZSCurrSubtrW1
ZSCurrSubtrW2
TconfigForW1
TconfigForW2
LocationOLTC1
Other parameters
1)
To compensate for delta connected CTs.
2)
Zero-sequence current is already removed by connecting main CTs in delta.
6.1.3.4

Summary and conclusions

The IED can be used for differential protection of three-phase power transformers with main
CTs either star or delta connected. However the IED has been designed with the assumption
that all main CTS are star connected. The IED can be used in applications where the main CTs
are delta connected. For such applications the following shall be kept in mind:
76
Selected value for Solution 1
(star connected CT)
1500
5
ToObject
General settings of the differential protection
selected value for both
Solution 1 (star conected CT)
1 (GBASVAL:1)
2 (GBASVAL:2)
Delta (D)
star=y
1 [30 deg lag]
Off
On
No
No
Not Used
Not relevant for this
application. Use default value.
1MRK 504 158-UEN A
Selected value for Solution 2 (delta
connected CT)
1500
=
866
3
EQUATION1889 V1 EN-US
5
ToObject
Selected value for both Solution 2 (delta
connected CT)
1 (GBASVAL:1)
2 (GBASVAL:2)
1)
STAR (Y)
star=y
1)
0 [0 deg]
Off
2)
On
No
No
Not Used
Not relevant for this application. Use
default value.
Application manual
(Equation 16)
SEMOD168160-5 v3

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