3.3 Commissioning
401
7UT613/63x Manual
C53000-G1176-C160-2
• Phase angle measurement for measuring location M1 with test current:
Check the phase angle under
measurement values
→
secondary
→
phase
angles
of side 1 of the protected object. All angles are referred to
I
L1M1
. The follow-
ing values must result approximately for a clockwise phase rotation:
ϕ
L1 M1
≈
0
°
ϕ
L2 M1
≈
240
°
ϕ
L3 M1
≈
120
°
If the angles are wrong, reverse polarity or swapped phase connections on measur-
ing location M1 may be the cause.
– Switch off the test source and the protected object (shut down the generator) and
earth it.
– Re-check the plant connections to the device and the test arrangement and
correct them.
– Repeat test and re-check the current angles.
• Phase angle measurement for measuring location M2 with test current:
Check the phase angle under
measurement values
→
secondary
→
phase
angles
of measuring location M2 of the protected object. All angles are referred to
I
L1M1
.
Consider that always the currents flowing into the protected object are defined as
positive: That means that, with through-flowing in-phase currents, the currents
leaving the protected object at measuring location M2, have reversed polarity (180
°
phase displacement) against the corresponding in-flowing currents at measuring lo-
cation M1.
Exception: With transverse differential protection, the currents of the corresponding
phase have equal phase!
For clockwise phase rotation and without phase displacement, the angles should
be approximately:
ϕ
L1 M2
≈
180
°
ϕ
L2 M2
≈
60
°
ϕ
L3 M2
≈
300
°
When measuring across a power transformer, approximately the values according
to Table 3-28 result for clockwise phase rotation:
Table 3-28
Displayed phase angle dependent on the protected object (three-phase)
1)
Angles are valid if the high voltage side is defined as side 1, otherwise read 360
°
minus the
stated angle
Protected Object Generator/Motor/
Busbar/Line
Transformer with Vector Group Numeral
Phase Angle
↓
0
1
2
3
4
5
6
7
8
9
10
11
ϕ
L1M2
180
°
180
°
150
°
120
°
90
°
60
°
30
°
0
°
330
°
300
°
270
°
240
°
210
°
ϕ
L2M2
60
°
60
°
30
°
0
°
330
°
300
°
270
°
240
°
210
°
180
°
150
°
120
°
90
°
ϕ
L3M2
300
°
300
°
270
°
240
°
210
°
180
°
150
°
120
°
90
°
60
°
30
°
0
°
330
°
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 ...