4.3 Using Power Fluctuation Testing (Simulation) Function
KP3000GS
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Initial Step
Initial Step is assigned to the stand-by state before the simulation starts. The KP3000GS also moves
to the Initial Step and becomes stand-by state after the simulation ends, except when the repeat
count is specified to 0 (= infinite count).
Transition Step (Trans 1 and Trans 2)
The Step Times of Trans 1 and Trans 2 can be set to zero for simulating the abrupt voltage and
phase changes. When the Step Time is set to the value other than zero, the set voltage and frequency
are swept linearly at the previous and next steps. Note that the AC voltage, frequency, start phase,
and Stop Phase cannot be set in the Transition Steps.
Other issues
The Exit operation is available during the simulation. Performing the Exit operation moves to
the Initial Step. The output remains on.
You can set the repeat on/off and repeat count for the simulation. When the repeat is set to on
and the repeat count to zero (0), the testing repeats infinitely.
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Notes
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The Simulation function does not support the standard tests defined by organizations such as
IEC. Use this function for a preliminary testing.
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4.3.2 Simulation Function Parameters
Table 4-4 shows the parameters of Simulation function. The common parameters are common to one
simulation. In the Simulation function, the signal source is fixed to INT sine wave and the ACDC
mode to ACDC mode. In each step, set the step-control parameter and the intra-Step parameter. As
for intra-Step parameter, the range that can be set differ depending on the output range (100 V/200 V
range) as in the case of Continuous function.
Table 4-4 Simulation Function Parameters
Common
parameter
Step-control parameter
Intra-Step parameter
Output range
AC/DC mode
(Fixed to ACDC)
Waveform
(Fixed to sine
wave)
Step Time
Start Phase
Stop Phase
Trigger output
Step sync code output (2bit)
Repeat count (1 to 9999 or infinite)
Frequency
AC voltage
Summary of Contents for KP3000GS
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