ABB RELION 670 Series Technical Manual page 410

Generator protection
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Section 7
Impedance protection
The injection unit REX060 is connected to the generator and to IED as shown in figure 214.
7.13.8.3
General measurement of ground fault impedance
From the REX060 the injected voltage and current are delivered as AC voltages to IED. The injected
voltage and current is measured and analyzed in the protection function software within IED. The
measured injected voltage and current are first processed by means of special filtering so that the
signals are referred to the injected frequency only.
The bare complex impedance is, see fig 217:
V
=
Z
bare
I
EQUATION2500-ANSI V1 EN-US
An equivalent circuit for the measured impedance is shown in figure 217.
R
f
ANSI11000003 V1 EN-US
Figure 217: Equivalent of the impedance measurement
In non-faulted operation R
Z
Measured
EQUATION2501 V1 EN-US
The calculation of Z
The factors
their values are calculated on the basis of measurements performed when known calibration
resistances are connected. The factor
achieve impedance values related to the primary system. The factor
series impedance Z
The factors
voltage and current, in order to convert it into the primary impedance Z
calibration, the Injection Commissioning Tool must be used. This tool is an integrated part of the
PCM600 tool.
In connection to this calibration, the first reference impedance is also derived.
404
Inj
Inj
Z
Measured
Z
shunt
is very large. A "healthy" impedance is calculated as:
f
=
×
+
k Z
k
1
bare
2
by Z
measured
bare
k1 and k2 [Ω] are derived during the calibration measurements under commissioning;
series
k1 and k2 are applied to the bare impedance Z
Z
bare
Z
I
series
inj
ANSI11000003_1_en.vsd
k1 and k2 is graphically shown in figure
,
k1 compensates for transformer ratio and other factors to
GUID-545BFD9B-BB9F-434C-AD03-B83F5DFC4811 v2
+
V
inj
-
218
k2 [Ω] compensates for the
, calculated from the measured
bare
. As support for the
measured
1MRK 502 066-UUS B
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