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IEC06000487-2-en.vsd
IEC06000487 V2 EN-US
Figure 73:
Vector diagram for line voltage drop compensation
The calculated load voltage U
L
is shown on the local HMI as value ULOAD under
Main menu/Test/Function status/Control/TransformerVoltageControl(ATCC,
90)
.
Load voltage adjustment
SEMOD159053-118 v6
Due to the fact that most loads are proportional to the square of the voltage, it is
possible to provide a way to shed part of the load by decreasing the supply voltage
a couple of percent. During high load conditions, the voltage drop might be
considerable and there might be reasons to increase the supply voltage to keep up
the power quality and customer satisfaction.
It is possible to do this voltage adjustment in two different ways in Automatic
voltage control for tap changer, single control TR1ATCC and parallel control
TR8ATCC:
1. Automatic load voltage adjustment, proportional to the load current.
2. Constant load voltage adjustment with four different preset values.
In the first case the voltage adjustment is dependent on the load and maximum
voltage adjustment should be obtained at rated load of the transformer.
In the second case, a voltage adjustment of the set point voltage can be made in
four discrete steps (positive or negative) activated with binary signals connected to
TR1ATCC or TR8ATCC function block inputs LVA1, LVA2, LVA3 and LVA4. The
corresponding voltage adjustment factors are given as setting parameters
LVAConst1
,
LVAConst2
,
LVAConst3
and
LVAConst4
. The inputs are activated with
a pulse, and the latest activation of anyone of the four inputs is valid. Activation of
the input LVARESET in TR1ATCC or TR8ATCC block, brings the voltage setpoint
back to
USet
.
With these factors, TR1ATCC or TR8ATCC adjusts the value of the set voltage
USet
according to the following formula:
Section 11
1MRK 504 169-UEN A
Control
198
Transformer protection RET650 2.2 IEC
Application manual
Содержание ret650
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