2 Functions
214
7UT613/63x Manual
C53000-G1176-C160-2
for 1-pole faults:
I2>
= 0.1 A, i.e. earth fault current as from approx. 0.3 A.
I
N
= 5 A results in 5 times the secondary value. Consider the current transformer ratios
when setting the device with primary values.
For a power transformer, unbalanced load protection may be used as sensitive pro-
tection for low magnitude phase-to-earth and phase-to-phase faults. In particular, this
application is well suited for delta-wye transformers where low side phase-to-ground
faults do not generate a high side zero sequence current.
Since transformers transform symmetrical currents according to the transformation
ratio "TR", the relationship between negative sequence currents and total fault current
for phase-to-phase faults and phase-to-earth faults are also valid for the transformer
as long as the turns ratio "TR" is taken into consideration.
Considering a power transformer with the following data:
The following faults may be detected at the low side:
If the pickup setting of the device on the high side is set to
I2>
= 0.1 A, then a phase-
to-earth fault current of
for single-phase,
for two-pole faults can be detected. This corresponds to 36 % and 20 % of the trans-
former nominal current respectively.
To prevent false operation for faults in other zones of protection, the delay time
T I2>
must be coordinated with the time grading of other relays in the system.
For generators and motors, the setting depends on the permissible unbalanced load
of the protected object. If the
I
2
> stage is set to the continuously permissible negative
sequence current, it can be used as an alarm stage with a long time delay. The
I
2
>>
stage is then set to a short-term negative sequence current with the delay time permit-
ted here.
Example:
Rated apparent power S
NT
= 16 MVA
primary nominal voltage U
N
= 110 kV
secondary nominal voltage U
N
= 20 kV
Vector Group
Dyn5
Primary CT set
100 A/1 A
Motor
I
N Motor
= 545 A
I
2 dd prim
/
I
N Motor
= 0.11 continuous
I
2 max prim
/
I
N Motor
= 0.55 for T
max
= 1 s
Current trans-
former
TR
= 600 A / 1 A
Setting
I2>
= 0.11 · 545 A = 60 A primary or
0.11· 545 A · (1/600) = 0.10 A secondary
Содержание SIPROTEC 7UT613 series
Страница 16: ...Contents 16 7UT613 63x Manual C53000 G1176 C160 2 Literature 631 Glossary 623 Index 633 ...
Страница 30: ...1 Introduction 30 7UT613 63x Manual C53000 G1176 C160 2 ...
Страница 506: ...A Appendix 506 7UT613 63x Manual C53000 G1176 C160 2 7UT633 D E ...
Страница 508: ...A Appendix 508 7UT613 63x Manual C53000 G1176 C160 2 7UT633 P Q ...
Страница 510: ...A Appendix 510 7UT613 63x Manual C53000 G1176 C160 2 7UT635 D E ...
Страница 512: ...A Appendix 512 7UT613 63x Manual C53000 G1176 C160 2 7UT635 P Q ...
Страница 515: ...A 2 Terminal Assignments 515 7UT613 63x Manual C53000 G1176 C160 2 7UT633 B ...
Страница 516: ...A Appendix 516 7UT613 63x Manual C53000 G1176 C160 2 7UT633 B Figure A 7 General diagram 7UT633 panel surface mounting ...
Страница 517: ...A 2 Terminal Assignments 517 7UT613 63x Manual C53000 G1176 C160 2 7UT633 N ...
Страница 518: ...A Appendix 518 7UT613 63x Manual C53000 G1176 C160 2 7UT633 N Figure A 8 General diagram 7UT633 panel surface mounting ...
Страница 519: ...A 2 Terminal Assignments 519 7UT613 63x Manual C53000 G1176 C160 2 7UT635 B ...
Страница 520: ...A Appendix 520 7UT613 63x Manual C53000 G1176 C160 2 7UT635 B Figure A 9 General diagram 7UT635 panel surface mounting ...
Страница 521: ...A 2 Terminal Assignments 521 7UT613 63x Manual C53000 G1176 C160 2 7UT635 N ...
Страница 522: ...A Appendix 522 7UT613 63x Manual C53000 G1176 C160 2 7UT635 N Figure A 10 General diagram 7UT635 panel surface mounting ...
Страница 622: ...A Appendix 622 7UT613 63x Manual C53000 G1176 C160 2 ...
Страница 632: ...Literature 632 7UT613 63x Manual C53000 G1176 C160 2 ...