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The minus sign (-) is needed to match the polarity of calculated and
measured residual currents.
The operation of WPWDE can be described with a module diagram. All the modules
in the diagram are explained in the next sections.
Directional
calculation
Level
detector
IRES
Residual
power
calculation
URES
BLOCK
OPERATE
Io
Uo
START
RCA_CTL
t
Timer
t
Blocking
logic
Figure 305: Function module diagram
Directional calculation
The Directional calculation module monitors the angle between the operating
quantity (residual current Io) and polarizing quantity (residual voltage Uo). The
operating quantity can be selected with the setting
Io signal Sel. The selectable
options are “Measured Io” and “Calculated Io”. The polarizing quantity can be
selected with the setting
Pol signal Sel. The selectable options are “Measured Uo”
and “Calculated Uo”. When the angle between operating quantity and polarizing
quantity after considering the
Characteristic angle setting is in the operation
sector, the module sends an enabling signal to Level detector. The directional
operation is selected with the
Directional mode setting. Either the “Forward” or
“Reverse” operation mode can be selected. The direction of fault is calculated based
on the phase angle difference between the operating quantity Io and polarizing
quantity Uo, and the value (ANGLE) is available in the monitored data view.
In the phasor diagrams representing the operation of WPWDE, the polarity of the
polarizing quantity (residual voltage Uo) is reversed. Reversing is done by switching
the polarity of the residual current measuring channel (see the connection in the
Protection relay's physical connections section).
If the angle difference lies between -90° to 0° or 0° to +90°, a forward-direction fault
is considered. If the phase angle difference lies within -90° to -180° or +90° to +180°,
a reverse-direction fault is detected. Thus, the normal width of a sector is 180°.
1MRS759142 F
Protection functions
REX640
Technical Manual
531
Содержание RELION REX640
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Страница 3: ...Document ID 1MRS759142 Issued 2023 02 07 Revision F Copyright 2023 ABB All rights reserved ...
Страница 167: ...Figure 62 Signal outputs in power supply module 1MRS759142 F Basic functions REX640 Technical Manual 167 ...
Страница 184: ...Figure 84 mA channels working as mA outputs Basic functions 1MRS759142 F 184 REX640 Technical Manual ...
Страница 1868: ...Figure 989 ANSI extremely inverse time characteristics General function block features 1MRS759142 F 1868 REX640 Technical Manual ...
Страница 1869: ...Figure 990 ANSI very inverse time characteristics 1MRS759142 F General function block features REX640 Technical Manual 1869 ...
Страница 1870: ...Figure 991 ANSI normal inverse time characteristics General function block features 1MRS759142 F 1870 REX640 Technical Manual ...
Страница 1874: ...Figure 995 ANSI long time inverse time characteristics General function block features 1MRS759142 F 1874 REX640 Technical Manual ...
Страница 1875: ...Figure 996 IEC normal inverse time characteristics 1MRS759142 F General function block features REX640 Technical Manual 1875 ...
Страница 1876: ...Figure 997 IEC very inverse time characteristics General function block features 1MRS759142 F 1876 REX640 Technical Manual ...
Страница 1877: ...Figure 998 IEC inverse time characteristics 1MRS759142 F General function block features REX640 Technical Manual 1877 ...
Страница 1878: ...Figure 999 IEC extremely inverse time characteristics General function block features 1MRS759142 F 1878 REX640 Technical Manual ...
Страница 1882: ...Figure 1002 RI type inverse time characteristics General function block features 1MRS759142 F 1882 REX640 Technical Manual ...
Страница 1885: ...Figure 1004 UK rectifier inverse time characteristic 1MRS759142 F General function block features REX640 Technical Manual 1885 ...
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