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Description of the Software Modules and Parameters
Parameter manual
b maXX
BM3000
Document no.: 5.12001.07
491
4
Synchronous motor
The set field current preset value (
) is supplied at a synchronous motor. The cur-
rent should be supplied negatively at high speed as otherwise the required voltage could
get too high.
Asynchronous motor
The maximum Id current (Saturation magnetizing current
) is supplied at an
asynchronous motor. The motor flux increases with the Id current and thereby the re-
quired voltage. The field weakening controller counteracts the Udc link controller and the
maximum Id current cannot be supplied, if the required voltage exceeds the available volt-
age.
At high speeds it is possible to supply block-shaped Id current with the output of the Udc
link-ld controller. At this process the flux increases and decreases dependent of the ld
current signs. The sign of the ld current changes, if the actual flux value (
) ex-
ceeds the limits, which are between 100% of the flux set value and the adjustable thresh-
old (
).The block-shaped ld current is supplied above the adjustable threshold
(
) - below the threshold positive ld current is supplied, only.
4.7.3.4 Short circuit brake
Synchronous motors are able to be braked using a short circuit brake, additionally. If the
DC link voltage exceeds a set threshold, the motor phases are shorted and the current
no longer flows into the DC link. The motor is decelerated by the resulting current.
4.7.3.5 Parameter Overview of the DC link controller
Functional block:
FbUzkcontroller [114]
For Parameter 130.3, see
Number
Name
Type
Min
Max
Default Value
Unit
Factor
Read
on
ly
St
o
ra
g
e
D
S
Su
pp
or
t
Cyclic W
rite
114.1
DC link controller set value
FLOAT
10
850
850
V
1:1
X
114.2
P-gain of DC link controller
FLOAT
0.001
256
0.01
1/V
1:1
X
114.3
Tn of DC link controller
FLOAT
0
1000
0.2
ms
1:1
X
114.5
Iq upper limit DC link ctrl
FLOAT
0
10000
10000
A
1:1
X
114.6
Iq lower limit DC link ctrl
FLOAT
-10000
0
-10000
A
1:1
X
114.7
Speed threshold for block
shape current
FLOAT
0
1e9
600000
Grad/
s
1:1
X
114.8
Flux threshold
FLOAT
0
1
0.5
%
1:100
X
X
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