Flt loop reactance
Flt phase reactance
X
=
=
1
GUID-049B892B-9031-4361-843B-7102E6A4DA17 V3 EN
(Equation 146)
GUID-9CBC31C7-4DF6-4555-9029-4188CCC5533C V2 EN
Figure 413:
Fault loop impedance for phase-to-phase fault loops (either “AB Fault”,
“BC Fault” or “CA Fault”)
The fault distance calculation algorithm for the phase-to-phase fault loops is defined by
using settings
Load Com PP loops
and
Enable simple model
. Options for the selection are
"Disabled" or "Enabled".
Load compensation can be enabled or disabled with setting
Load Com PP loops
. The load
compensation should be disabled only if the ratio between the fault current and load
current is large or when the value of the fault distance estimate for the short circuit fault
is required from each shot of an autoreclosing sequence.
The fault distance calculation is most accurate when calculated with the fault loop model.
This model requires positive sequence impedances of the protected feeder to be given as
settings. If these settings are not available, valid impedance values can be calculated also
without the fault loop model with setting
Enable simple model
= “TRUE”. However, valid
distance estimate, that is, the conversion of measured impedance (‘’electrical fault
distance’’) into a physical fault distance requires accurate positive sequence impedance
settings.
Fault loop “ABC Fault”
Fault loop “ABC Fault” is used exclusively for the three-phase short circuit fault.
shows the three-phase fault loop model. The following impedances are measured and
stored in the recorded data of 21FL.
Flt point resistance
R
fault
=
GUID-2503378E-4AC5-4E9F-9D77-2E7C71592C37 V3 EN
(Equation 147)
Flt loop resistance
R
R
fault
=
+
1
GUID-F9E2B211-9C30-4A81-ABD4-525CC10AB7A8 V2 EN
(Equation 148)
Flt loop reactance
Flt phase reactance
X
=
=
1
GUID-049B892B-9031-4361-843B-7102E6A4DA17 V3 EN
(Equation 149)
1MAC059074-MB A
Section 5
Protection related functions
615 series ANSI
811
Technical Manual
Summary of Contents for Relion 615 series
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