Functions
6-81
7SJ63 Manual
C53000-G1140-C120-1
−
Address
=
FRV
ϕ
: the real component of the zero sequence current with re-
spect to the displacement voltage (the component of 3I
0
in phase with V
0
or 3V
0
) is
evaluated by the setting at address
(see Figure 6-32);
−
Address
=
VLQ
ϕ
: the reactive (capacitive) component of the zero sequence
current with respect to the displacement voltage (the component of 3I
0
that leads
V
0
or 3V
0
by 90°) is evaluated by the setting at address
(see Figure 6-38).
Figure 6-38
Directional Line for sin
ϕ
Measurement
The directional line, in this respect, may be rotated within the range ± 45° — as shown
in Figure 6-33.
Ungrounded
System
In an ungrounded system, no zero sequence fault current exists, therefore, the zero
sequence charging current must be used for directional determination. As is the case
with the zero sequence fault current, the zero sequence charging current will also lead
the zero sequence voltage for a fault in the forward direction. A setting equal to about
half of this current should be selected at address
. The measurement time se-
lected at address
should be
VLQ
ϕ
.
Grounded System
In a grounded system, address
should be set below the minimum anticipated
ground fault current. It is important to note that only the current components that are
perpendicular to the directional limit lines defined at addresses
and
will be
evaluated.
&RV
ϕ
is the type of measurement used, and the correction angle is set to
–45
°
, since the ground fault current is typically resistive-inductive (right portion of Fig-
ure 6-33).
Electrical Motors
One may set the value cos
ϕ
for the measurement type and use a correction angle of
+45° for electrical motors supplied from a common bus in an ungrounded system,
since the ground connection current is often composed of an overlap of the capacitive
ground current from the system and the resistive current of the load resistance (Figure
6-33, left section).
((E
I
E Ew
U
E
0(66$57
VLQ3+,
3+,.255(.785
I
EE
G E R
IEE
7<3(2)0($685(0(17 = 6,13+,
3+,&255(&7,21 =
3I
0
reactive
(capacitive)
Forward
Inductive
Reverse
3I
0
dir=
Set at Addr.
3123
3I
0
3I
0
dir
3I
0
real V
0
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. com
Содержание siprotec 7SJ63
Страница 16: ...xiv 7SJ63 Instruction Manual C53000 G1140 C120 1 w w w E l e c t r i c a l P a r t M a n u a l s c o m ...
Страница 28: ...Introduction 1 12 7SJ63 Manual C53000 G1140 C120 1 w w w E l e c t r i c a l P a r t M a n u a l s c o m ...
Страница 112: ...SIPROTEC 4 Devices 4 38 7SJ63 Manual C53000 G1140 C120 1 w w w E l e c t r i c a l P a r t M a n u a l s c o m ...
Страница 346: ...Functions 6 182 7SJ63 Manual C53000 G1140 C120 1 w w w E l e c t r i c a l P a r t M a n u a l s c o m ...
Страница 494: ...Technical Data 10 48 7SJ63 Manual C53000 G1140 C120 1 w w w E l e c t r i c a l P a r t M a n u a l s c o m ...
Страница 604: ...Index Index 6 7SJ63 Instruction Manual C53000 G1140 C120 1 w w w E l e c t r i c a l P a r t M a n u a l s c o m ...