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PHS
Zm
X0
1.44 X0
³
×
EQUATION1310 V1 EN-US
(Equation 270)
where:
X1
Zm
is the reactive reach for the zone to be covered by FRPSPDIS, and the constant
1.44
is a safety margin
X0
Zm
is the zero-sequence reactive reach for the zone to be covered by FRPSPDIS
The reactive reach in reverse direction is automatically set to the same reach as for
forward direction. No additional setting is required.
Fault resistance reach
GUID-CB13A35F-0BF8-4CFA-9311-EADE194C1D85 v1
The resistive reach must cover
RFPE
for the overreaching zone to be covered,
mostly zone 2. Consider the longest overreaching zone if correct fault selection is
important in the application. Equation
recommended resistive reach.
A) 60 degrees
1.1
Zm
RFFwPE
RFPE
³
×
EQUATION2223 V2 EN-US
(Equation 271)
B) 90 degrees
(
)
1
2
1
0
3
Zm
Zm
Zm
RFFwPE
R PE
R PE
RFPE
> ×
×
+
+
EQUATION2224 V2 EN-US
(Equation 272)
The security margin has to be increased in the case where φloop<60° to avoid that
FRPSPDIS characteristic cuts off some part of the zone measurement
characteristic.
RFFwPP
and
RFFRvPP
must be set in a way that the loop characteristic angle can
be 60 degrees (or alternatively the same or lower compared to the measuring zone
that must be covered). If the characteristic angle for IEDs in the 500 series of 90
degrees is desired,
RFFwPP
and
RFFRvPP
must be set to minimum setting values.
8.10.3.2
Phase-to-earth fault in reverse direction
M13142-151 v4
Reactive reach
M13142-153 v2
The reactive reach in reverse direction is the same as for forward so no additional
setting is required.
Resistive reach
M13142-156 v4
The resistive reach in reverse direction must be set longer than the longest reverse
zones. In blocking schemes it must be set longer than the overreaching zone at
1MRK 506 369-UEN B
Section 8
Impedance protection
Line distance protection REL670 2.2 IEC
321
Application manual
Содержание REL670 2.2 IEC
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