Kaco blueplanet 92.0 TL3 US Manual page 69

Grid support interactive inverter
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Manual
Country-
Level Display/
spec. Set-
settings
tings
Minimum cos-phi Q1
1
2
3
4
4
- Minimum cos-phi Q4
0 – 1 /
0.001
Q(U) active curve
1
2
3
4
4
1 - 4
Priority mode
1
2
3
4
4
Q-Priority | P-Prior-
ity
Number of nodes
1
2
3
4
4
2 - 10
Node 1- Node 10
1
2
3
4
4
Power / Excitation /
Voltage
0 – 100 [% Slim] /
43.6 [% Slim] /
Over-excited | un-
der-excited
0 – 125.0 [%
Unom] /
[% Unom] /
Unom]
Frequency dependent
2
1
3
4
4
power reduction
Not at IL, IT
Operation mode
1
2
3
4
4
Off | Mode 1 |
Mode 2
Power reference mode
1
2
3
4
4
with underfrequency
Actual power |
Nominal power
Power reference mode
with overfrequency
Actual power |
Nominal power
Dynamic gradient
1
2
3
4
4
mode
On | Off
KACO blueplanet 92.0 TL3 US KACO blueplanet 110 TL3 US KACO blueplanet 125 TL3 US
Configuration and operation | 9
Action in this menu/meaning
F Enter the minimum cos ϕ factor for quadrants 1 and 4.
0 /
F Select the active curve.
NOTE: Up to 4 characteristic curves can be configured inde-
pendently and one of them can be activated for regulation
each time.
F Set priority for reactive power - Q or active power - P.
NOTE: When it comes to P priority, the reactive power adjust-
ment range is limited subject to the active power that is cur-
rently available and fed in.
NOTE: The maximum number of configurable nodes depends
on the selected grid type.
F Specify the number of nodes.
F Set the reactive power of the node as a percentage of the maximum
power.
0.1
F Art der Phasenverschiebung auswählen.
NOTE: Übererregt entspricht einer kapazitiven Last, unter-
erregt entspricht einer induktiven Last.
F Enter the voltage of the node in volts..
90 ... 110.0
NOTE: The voltage values of the nodes must increase continu-
0.1 [%
ously. At voltages below the 1st node and voltages above the
last node, the reactive power value of the 1st or last node is
used each time.
NOTE: Activate frequency-dependent power reduction in the
P(f) menu.
F Specify the operation mode.
1. Determine control method for underfrequency.
2. Determine control method for overfrequency.
F Activate dynamic gradient.
Page 69

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