ABB RELION 670 SERIES REG670 Applications Manual page 255

Generator protection
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1MRK 502 071-UUS A
Generator protection REG670 2.2 ANSI and Injection equipment REX060, REX061, REX062
Application manual
With bypassed
capacitor
I
F
ANSI06000606 V1 EN-US
Figure 111:
Phasor diagrams of currents and voltages for the bypassed and
inserted series capacitor during voltage inversion
It is obvious that voltage V
situation corresponds, from the directionality point of view, to fault conditions on line
without series capacitor. Voltage V
when:
<
<
+
X
X
X
X
L1
C
S
L1
EQUATION1902 V1 EN-US
Where
X
is the source impedance behind the IED
S
The IED point voltage inverses its direction due to presence of series capacitor and its
dimension. It is a common practice to call this phenomenon voltage inversion. Its
consequences on operation of different protections in series compensated networks
depend on their operating principle. The most known effect has voltage inversion on
directional measurement of distance IEDs (see chapter
details), which must for this reason comprise special measures against this
phenomenon.
There will be no voltage inversion phenomena for reverse faults in system with VTs
located on the bus side of series capacitor. The allocation of VTs to the line side does
not eliminate the phenomenon, because it appears again for faults on the bus side of
IED point.
Current inversion
Figure
112
presents part of a series compensated line with corresponding equivalent
voltage source. It is generally anticipated that fault current I
compensated lines from power source towards the fault F on the protected line. Series
capacitor may change the situation.
With inserted
capacitor
en06000606_ansi.vsd
will lead the fault current I
M
in IED point will lag the fault current I
M
Section 8
Impedance protection
I
F
as long as X
> X
F
L1
C
F
(Equation 104)
"Distance protection"
GUID-9F7FDF59-D0B4-4972-9CB0-B3D56DACA09E v1
flows on non-
F
. This
in case
for more
249

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