Settings - Siemens siprotec 7SD610 User Manual

Differential protection
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long lines with small source impedance. In other cases it is set to ∞ (default setting).
This parameter can only be altered with DIGSI under Additional Settings.
When using a PC and DIGSI for the parameterisation, the values can be optionally
entered as primary or secondary quantities. For settings with secondary quantities the
currents will be converted to the secondary side of the current transformers.
Exemplary calculation:
110 kV overhead line 150 mm
s (length)
R
X
Short-circuit power at the feeding end:
S
Current transformer 600 A/5 A
From that the line impedance Z
Z
Z
The three-phase short-circuit current at line end is I"
With a safety factor of 10 %, the following primary setting value results:
Setting value I>>>> = 1.1 · 2245 A = 2470 A
or the secondary settings value:
i.e. in case of fault currents exceeding 2470 A (primary) or 20.6 A (secondary) you can
be sure that a short-circuit has occurred on the protected line. This line can be discon-
nected immediately.
Note: The calculation was carried out with absolute values, which is sufficiently
precise for overhead lines. A complex calculation is only needed if the angles of the
source impedance and the line impedance vary considerably.
2.8.3

Settings

Addresses which have an appended "A" can only be changed with DIGSI, under Ad-
ditional Settings.
The table indicates region-specific presettings. Column C (configuration) indicates the
corresponding secondary nominal current of the current transformer.
7SD610 Manual
C53000-G1176-C145-4
2.8 Instantaneous High-Current Switch-onto-Fault Protection (SOTF)
= 60 km
= 0.19 Ω/km
/s
1
= 0.42 Ω/km
/s
1
" = 3.5 GVA (subtransient, since the I>>>>stage can respond to the first peak value)
k
= √ 0 .19
2
/s
1
= 0.46 Ω/km · 60 km
L
2
with the data:
and the source impedance Z
L
Ω/km = 0.46 Ω/km
2
+ 0.42
= 27.66 Ω
are calculated:
S
(with source voltage 1.1· U
sc end
):
N
95

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