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∑ Q power
·
The sum total corrective power of all connected 3-phase
capacitor stages
Available Q power
·
3-phase corrective power still available for switching in
Overcurrent
·
The overcurrent ratio I
rms
/I
50Hz/60Hz
is displayed.
Overcurrent is the theoretically determined ratio of the root-mean-
square current to the fundamental current in the capacitor. The
choke factor p of the power factor correction system is also taken
into account in this theoretical computation.
– The overcurrent in the capacitor can only be computed
accurately if the system's choke factor is entered
correctly.
8.6.3 Capacitor stages table
Figure 68 Capacitor stages table
8.6.4 Capacitor stages rating diagram
The capacitor stages rating diagram shows the momentary corrective power of the capacitor
stages as a percentage. After the instrument has been started up, this graphic shows every
detected stage as 100%. With time, however, capacitor wear causes this corrective power to fall.
When it falls below a set level, the PQC gives an alarm.
Figure 69 Diagram showing all stages at 100%
Figure 70 Diagram showing corrective
power of all stages
8.6.5 Switch cycle diagram
This diagram shows the switching cycle counters for all the stages as a column chart. 100% on
the y-axis represents the set limit for the number of switching cycles counted.