9-4
T60 Transformer Protection System
GE Multilin
9.2 DIFFERENTIAL CHARACTERISTIC TEST EXAMPLES
9 COMMISSIONING
9
9.2.2 TEST EXAMPLE 1
a) DESCRIPTION
TRANSFORMER DATA:
•
20 MVA, 115/12.47 kV, CT (HV) = 200:1, CT (LV) = 1000:1, Y/y0° with a grounded LV neutral
TEST SET CONFIGURATION:
The fault current distribution for an external b-c fault is identical for the HV and LV transformer sides and can be simulated
easily with two current sources. Connect the first current source to the relay Phase “B” and “C” terminals, corresponding to
the HV winding CTs in series, and the second source to the Phase “b” and “c” relay terminals, corresponding to the LV CTs.
Ensure the polarity is correct and the relative phase angles are similar to the shown in the figure; that is, 180° between IB
and IC, 180° between Ib and Ic, 180° between IB and Ib, and 180° between IC and Ic. Follow the magnitudes and angles of
the injected currents from the tables below to ensure the test will be performed correctly
OPERATING CRITERIA:
The differential element operates if the differential current (
I
d
) exceeds the characteristic defined by the relay settings for
restraint current magnitude (
I
r
). The differential current
I
d
is the vector sum of the compensated currents, and
I
r
is the larg-
est compensated current. Compensation refers to vector and magnitude corrections applied to the currents from the HV
and LV transformer sides.
The tests verify the operation and no-operation response for points from all regions of the percentage differential character-
istic. These tests are:
•
Test for zero differential current
•
Minimum Pickup
•
Slope 1
•
The region between Slope 1 and Slope 2
•
Slope 2
RELAY CONFIGURATION:
The AC Inputs and Source are configured as follows:
TWO WINDING TRANSFORMER CONFIGURATION:
Application of excessive current (> 3 ´ In) for extended periods damages the relay.
AC INPUTS SETTING
CT F1
CT M1
SOURCE SETTING
SOURCE 1
SOURCE 2
Phase CT Primary
200
1000
Name
SRC 1
SRC 2
Phase CT Secondary
1
1
Phase CT
F1
M1
Ground CT Primary
X
X
Ground CT
X
X
Ground CT Secondary
X
X
Phase VT
X
X
Aux VT
X
X
WINDING 1 SETTINGS
VALUE
WINDING 2 SETTINGS
VALUE
PERCENT DIFF
VALUE
Source
SRC 1
Source
SRC 2
Minimum PKP
0.1 pu
Rated MVA
20 MVA
Rated MVA
20 MVA
Slope 1
15%
Nom Ph-Ph Voltage
115 kV
Nom Ph-Ph Voltage
12.47 kV
Breakpoint 1
2 pu
Connection
Wye
Connection
Wye
Breakpoint 2
8 pu
Grounding
Not within zone
Grounding
Within zone
Slope 2
95%
Angle WRT
0°
Angle WRT
0°
Resistance 3Ph
10.000 ohms
Resistance 3Ph
10.000 ohms
NOTICE
Summary of Contents for T60
Page 6: ...vi T60 Transformer Protection System GE Multilin TABLE OF CONTENTS ...
Page 14: ...xiv T60 Transformer Protection System GE Multilin TABLE OF CONTENTS ...
Page 34: ...1 20 T60 Transformer Protection System GE Multilin 1 5 USING THE RELAY 1 GETTING STARTED 1 ...
Page 490: ...5 344 T60 Transformer Protection System GE Multilin 5 10 TESTING 5 SETTINGS 5 ...
Page 522: ...6 32 T60 Transformer Protection System GE Multilin 6 5 PRODUCT INFORMATION 6 ACTUAL VALUES 6 ...
Page 536: ...7 14 T60 Transformer Protection System GE Multilin 7 1 COMMANDS 7 COMMANDS AND TARGETS 7 ...
Page 568: ...10 12 T60 Transformer Protection System GE Multilin 10 6 DISPOSAL 10 MAINTENANCE 10 ...
Page 596: ...A 28 T60 Transformer Protection System GE Multilin A 1 PARAMETER LISTS APPENDIX A A ...
Page 716: ...B 120 T60 Transformer Protection System GE Multilin B 4 MEMORY MAPPING APPENDIX B B ...
Page 762: ...E 10 T60 Transformer Protection System GE Multilin E 1 IEC 60870 5 104 PROTOCOL APPENDIX E E ...
Page 774: ...F 12 T60 Transformer Protection System GE Multilin F 2 DNP POINT LISTS APPENDIX F F ...