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R
0E
R
0
1
X
m0
2
R
0
2
X
0
2
+
--------------------------
+
è
ø
ç
÷
æ
ö
×
=
EQUATION561 V1 EN-US
(Equation 319)
X
0E
X
0
1
X
m0
2
R
0
2
X
0
2
+
--------------------------
–
è
ø
ç
÷
æ
ö
×
=
EQUATION562 V1 EN-US
(Equation 320)
8.12.3.6
Setting the reach with respect to load
GUID-ED84BDE6-16CD-45ED-A45D-5CFB828A9040 v6
Set separately the expected fault resistance for phase-to-phase faults
RFPPZx
and
for the phase-to-earth faults
RFPEZx
for each zone. For each distance zone, set all
remaining reach setting parameters independently of each other.
The final reach in the resistive direction for phase-to-earth fault loop measurement
automatically follows the values of the line-positive and zero-sequence resistance,
and at the end of the protected zone is equal to equation
.
1
R
2 R1Zx
R0Zx
RFPEZx
3
IECEQUATION2303 V2 EN-US
(Equation 321)
2 X1Zx
X0Zx
arctan
2 R1Zx
R0Zx
loop
EQUATION2304 V2 EN-US
(Equation 322)
Setting of the resistive reach for the underreaching zone 1 should follow the
condition to minimize the risk for overreaching:
RFPEZx
4.5 X1Zx
IECEQUATION2305 V2 EN-US
(Equation 323)
The fault resistance for phase-to-phase faults is normally quite low compared to the
fault resistance for phase-to-earth faults. To minimize the risk for overreaching,
limit the setting of the zone1 reach in the resistive direction for phase-to-phase loop
measurement based on equation
.
6
1
RFPPZx
X Zx
IECEQUATION2306 V3 EN-US
(Equation 324)
The setting
XLd
is primarily there to define the border between what is considered
a fault and what is just normal operation. See figure
In this context, the main
examples of normal operation are reactive load from reactive power compensation
equipment or the capacitive charging of a long high-voltage power line.
XLd
needs
1MRK 506 369-UEN B
Section 8
Impedance protection
Line distance protection REL670 2.2 IEC
351
Application manual
Summary of Contents for REL670 2.2 IEC
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