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ABB Network Partner AB
Requirements and basic technical
data - REC 561
Version 1.0-00
Page 2
-
20
All testing was made without any remanence flux in the current trans-
former core. So the requirements below are fully valid for a core with no
remanence flux. General recommendations for additional margins for
remanence flux cannot be provided. They depend on the reliability and
economy requirements.
When TPY current transformers are used, practically no additional margin
is needed due to the anti-remanence air gap.
For TPX current transformers, remember that the small probability of a
fully asymmetrical fault, together with maximum remanence flux in the
same direction as the flux generated by the fault can influence decisions
when about additional margin. Fully asymmetrical fault current is
achieved when the fault occurs at zero voltage (0
°).
Tests showed that
95% of the faults in the network occurs when the voltage is between 40
°
and 90
°
.
3.3 Fault current
The current transformer requirements are based on the maximum fault
current for faults in different positions. Maximum fault current occurs for
three-phase faults or single-phase-to-earth faults. The current for a single
phase-to-earth fault exceeds the current for a three-phase fault when the
zero sequence impedance in the total fault loop is less than the positive
sequence impedance.
When calculating the current transformer requirements, use maximum
fault current and consider both fault types.
3.4 REC 561 current
transformer
requirements
The current transformer secondary limiting emf (E
2max
) should meet the
two requirements below:
I
kmax
Maximum primary fundamental frequency current for forward
and reverse fault
I
pn
Primary nominal CT current
I
sn
Secondary nominal CT current
I
R
Protection terminal nominal current
R
CT
CT secondary winding resistance
R
L
CT secondary cable resistance and additional load
a
This factor is a function of the network frequency and the time con-
stant for the dc component in the fault current
E
2max
I
kmax
I
sn
⋅
I
pn
-----------------------------
a
R
CT
R
L
0 5
,
I
R
2
----------
+
+
⋅ ⋅
>
Содержание REC 561
Страница 19: ...ABB Network Partner AB Introduction REC 561 Version 1 0 00 1MRK 580 146 XEN Page 2 14 ...
Страница 31: ...ABB Network Partner AB Requirements and basic technical data REC 561 Version 1 0 00 Page 2 26 ...
Страница 49: ...ABB Network Partner AB Page IV ...
Страница 67: ...ABB Network Partner AB Installation and commissioning Version 1 0 00 1MRK 580 166 XEN Page 3 18 ...
Страница 85: ...ABB Network Partner AB Local man machine communication Version 1 0 00 1MRK 580 156 XEN Page 3 36 ...
Страница 121: ...ABB Network Partner AB Menu tree Appendix Version 1 0 00 1MRK 580 158 XEN Page 3 72 ...
Страница 139: ...ABB Network Partner AB Terminal identification Version 1 0 00 1MRK 580 160 XEN Page 4 4 ...
Страница 143: ...ABB Network Partner AB Activation of setting group Version 1 0 00 1MRK 580 162 XEN Page 4 8 ...
Страница 175: ...ABB Network Partner AB Configurable logic Version 1 0 00 1MRK 580 161 XEN Page 4 40 ...
Страница 261: ...ABB Network Partner AB Auto reclosing Single and or three phase Version 1 0 00 1MRK 580 170 XEN Page 5 82 ...
Страница 281: ...ABB Network Partner AB Loss of power system voltage Version 1 0 00 1MRK 580 153 XEN Page 5 102 ...
Страница 385: ...ABB Network Partner AB Apparatus control Version 1 0 00 1MRK 580 150 XEN Page 6 100 ...
Страница 495: ...ABB Network Partner AB Interlocking Version 1 0 00 1MRK 580 151 XEN Page 6 210 ...
Страница 515: ...ABB Network Partner AB Event function Version 1 0 00 1MRK 580 140 XEN Page 6 230 ...
Страница 519: ...ABB Network Partner AB Page IV ...
Страница 561: ...ABB Network Partner AB Time synchronisation Version 1 0 00 1MRK 580 135 XEN Page 7 42 ...
Страница 569: ...ABB Network Partner AB Internal events Version 1 0 00 1MRK 580 134 XEN Page 7 50 ...
Страница 599: ...ABB Network Partner AB Index Version 1 0 01 1MRK 580 175 XEN Page 8 6 ...
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