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BONFIGLIOLI ACTIVE Cube ACU 401-23 User Manual

BONFIGLIOLI ACTIVE Cube ACU 401-23
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10.2 Further motor parameters
In particular the field-oriented control requires the determination of further data
which cannot be read off the rating plate of the 3-
phase machine for the precise
calculation of the machine model. In the course of the guided commissioning, the
parameter identification was carried out to measure the further motor parameters.
10.2.1 Stator Resistance
The resistance of the stator winding is measured during the guided commissioning.
The measured value is saved as a phase value in parameter Stator resistance 377
and is 3 times smaller than the winding resistance in delta connection.
By default, the equivalent stator resistance of a standard motor is entered to match
the reference output of the frequency inverter.
Parameter Settings
No.
Description
Min.
Max.
Fact. sett.
377 Stator resistance
1)
0 mΩ 65535 mΩ
R
sN
1190 Stator resistance
2)
0.001 Ω 100.000 Ω 10.000 Ω
1)
Available in configurations 1xx, 2xx, 4xx (Parameter
Configuration
30).
2)
Available in configurations 5xx and 6xx (Parameter
Configuration
30).
Stator resistance asynchronous motor:
The value of the stator resistance can be optimized while the machine is in no-load
operation. At the stationary operating point, the torque-forming current Isq 216
and/or the estimated Active current 214 should be zero. Due to the temperature-
dependent of the stator resistance, the adjustment should be done at a winding tem-
perature which is also reached during normal operation.
A correct measurement will optimize the control functions.
Stator resistance asynchronous motor:
The value of the stator resistance of the synchronous motor is entered during the
guided commissioning. The value of the stator resistance is used for adjustments of
the current controller and should be therefore entered as exact as possible. The sta-
tor resistance
1190
is the value between two motor phases and can be taken usually
from the data sheet of the motor.
10.2.2 Leakage Coefficient
The leakage coefficient of the machine defines the ratio of the leakage inductivity to
the main inductivity. The torque and flux-forming current components are thus cou-
pled via the leakage coefficient. Optimization of the leakage coefficient within the
field-
orientated control systems demands acceleration to various operating points of
the drive. Unlike the torque-forming current Isq 216, the flow-forming current Isd
215 should be largely independent of the load torque. The flow-
forming current
component is inversely proportional to the leakage coefficient. If the leakage coeffi-
cient is increased, the torque-forming current increases and the flux-forming compo-
nent drops. The adjustment should result in a relatively constant actual current
Isd
215, matching the set Rated magnetizing current 716, re
gardless of the load on the
drive.
The sensorless control system uses the parameter Leakage coefficient 378
in order
to optimize the synchronization to one drive.
Parameter
Settings
No.
Description
Min.
Max.
Fact. sett.
378
Leakage Coefficient
1.0 %
20.0 %
7.0 %
124 Operating Instructions ACU 06/13

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BONFIGLIOLI ACTIVE Cube ACU 401-23 Specifications

General IconGeneral
BrandBONFIGLIOLI
ModelACTIVE Cube ACU 401-23
CategoryInverter
LanguageEnglish

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