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voltage phase, and the minimum or maximum magnitude corresponding to swell
or dip/ interruption during variation is temporarily stored. If the minimum or
maximum is found in tracking and a new magnitude is stored, also the inactive
phase voltages are stored at the same moment, that is, the inactive phases are
not magnitudetracked. The time instant (time stamp) at which the minimum or
maximum magnitude is measured is also temporarily stored for each voltage phase
where variation is active. Finally, variation detection triggers the recorded data
update when the variation activation ends and the maximum duration time is not
exceeded.
The data objects to be recorded for PHQVVR are given in
. There are
totally three data banks, and the information given in the table refers to one data
bank content.
The three sets of recorded data available are saved in data banks 1-3. The data bank
1 holds always the most recent recorded data, and the older data sets are moved to
the next banks (1→2 and 2→3) when a valid voltage variation is detected. When all
three banks have data and a new variation is detected, the newest data are placed
into bank 1 and the data in bank 3 are overwritten by the data from bank 2.
shows a valid recorded voltage interruption and two dips for the
Phase
mode value "Single Phase". The first dip event duration is based on the
U_A
duration, while the second dip is based on the time difference between the dip
stop and start times. The first detected event is an interruption based on the
U_B
duration given in
. It is shown also with dotted arrows how voltage time
stamps are taken before the final time stamp for recording, which is shown as a
solid arrow. Here, the
U_B
timestamp is not taken when the
U_A
activation starts.
U_A
U_C
U_B
U_A duration
U_B duration
U_B amplitude &
timestamp
U_A amplitude &
timestamp
U_C amplitude & timestamp
Voltage dip set
Voltage swell set
D
ip
st
art
D
ip
st
op
Voltage Int set
Figure 976: Valid recorded voltage interruption and two dips
Power quality measurement functions
1MRS759142 F
1840
REX640
Technical Manual
Содержание RELION REX640
Страница 1: ... RELION PROTECTION AND CONTROL REX640 Technical Manual ...
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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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