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60
3 zone impedance protection (Z(n)RW)
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and
In case of short lines the possibility of covering sufficiently large fault resistance is im-
portant. The different setting options for the range in the reactive and resistive reach
provide increased flexibility for the distance protection.
An optimized overreaching communication system can increase the resistance coverage
yet further. The optimal solution in some applications is to add the directional earth-
fault function to the distance protection.
In railway applications the margin to the load impedance is, in order to avoid load con-
flicts, of primary significance. Quadrilateral characteristics with different range of set-
tings in the reactive (to cover sufficient length of the line) and resistive (to avoid load
conflicts) directions will, to a large extent, reduce the conflicts that are extremely com-
mon for circular characteristics.
A large reactive setting range, that is independent for each zone, together with current
sensitivity down to 10% of the rated current is an important factor to increase the oper-
ability of the distance protection when used on long lines.
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Measured current and voltage values are used for the fault loop equations. The apparent
impedances are calculated and checked against the set limits.
The calculation of apparent impedances at faults for single-phase catenary is:
(Equation 15)
where:
RFPE, X and KN
are the reach setting parameters
Z
1
RFPE
1
jX
1
+
=
Z
0
2 K
N
⋅
1
+
(
)
Z
1
⋅
=
Z
ap
U
L1
I
L1
---------
=
Содержание REO 517
Страница 10: ... RQWHQWV ...
Страница 16: ...6 Introduction to the application manual KDSWHU QWURGXFWLRQ ...
Страница 64: ...54 Blocking of signals during test KDSWHU RPPRQ IXQFWLRQV ...
Страница 88: ...78 Scheme communication logic ZCOM KDSWHU LQH LPSHGDQFH ...
Страница 100: ...90 Time delayed phase and residual overcurrent protection TOC1 KDSWHU XUUHQW Equation 36 Iset IsSEC I1b 100 ...
Страница 146: ...136 Unbalance protection for capacitor banks TOCC KDSWHU XUUHQW ...
Страница 166: ...156 Dead line detection DLD KDSWHU 3RZHU V VWHP VXSHUYLVLRQ ...
Страница 171: ...161 About this chapter KDSWHU RQWURO KDSWHU RQWURO ERXW WKLV FKDSWHU This chapter describes the control functions ...
Страница 293: ...283 About this chapter KDSWHU RJLF KDSWHU RJLF ERXW WKLV FKDSWHU This chapter describes the logic functions ...
Страница 378: ...368 Monitoring of DC analog measurements KDSWHU 0RQLWRULQJ ...
Страница 379: ...369 About this chapter KDSWHU 0HWHULQJ KDSWHU 0HWHULQJ ERXW WKLV FKDSWHU This chapter describes the metering functions ...
Страница 384: ...374 Pulse counter logic PC KDSWHU 0HWHULQJ ...
Страница 412: ...402 Serial communication modules SCM KDSWHU DWD FRPPXQLFDWLRQ ...
Страница 440: ...430 LED indication module KDSWHU DUGZDUH PRGXOHV ...