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ADV100 • Functions description and parameters list
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22.6 – FUNCTIONS/POWER LOSS
This function controls a loss of power or temporary mains failure.
When the function is enabled the system stops with the controlled ramp; the power regenerated by the load sustains
the DC link power supply so that the motor speed can be controlled. The speed of the motor is controlled for as long
as power can be recovered (motor speed almost zero but not zero), after which the
Sottotensione
alarm is gener-
ated and the motor performs an uncontrolled stop due to inertia.
The function is only effective with loads that accumulate sufficient energy (typically loads with a high moment of
inertia and which the moment the power loss occurs have a speed of rotation not close to zero). The function cannot
be used for passive loads.
The function can only be used with
Regulation mode = Flux vector CL
and
Regulation mode = V/f control
.
The Powerloss function is enabled when the DC link voltage falls below a threshold configured internally as a func-
tion of the mains voltage at a value that is higher than the
Undervoltage
threshold. When the function is enabled the
drive controls a stop with a user-definable deceleration ramp. In this phase the current limit is controlled by a regula-
tor on the DC link voltage and the setpoint is a threshold configured internally as a function of the mains voltage at a
value below the
Overvoltage
threshold.
The regulator envisages two setting parameters (proportional and integral) calculated in advance by the drive as a
function of the size of the motor and plate data. If the regulator acts on the current limit the motor speed does not
follow the set deceleration ramp. The function continues for as long as power can be recovered, after which the
Undervoltage
alarm is generated. If the mains supply is restored during the deceleration ramp phase, the user can
configure how the drive should behave. The following options are available: continue in any case until reaching zero
speed or stop the deceleration ramp and pass to the set reference.
The drive does not automatically recognise the fact that the mains supply has been restored. This information must
be supplied from the outside via the
Powerloss mains src
digital input.
The presence of the braking unit prevents the intervention of the
Overvoltage
alarm and the function has the ad-
vantage of being able to stop the motor while guaranteeing the set time.
As the setpoint of the Powerloss function regulator is higher than the brake activation threshold, it is not enabled and
the current limit is not altered to allow compliance with the set deceleration ramp time. The intervention of the braking
unit dissipates the energy of the motor in the resistor, reducing the amount of power available to sustain the DC link
and the time available to control stopping of the motor. The presence of the braking unit could mean that the speed of
the motor from which no power can be recovered is higher than that with no braking unit.
The function can be used on machines with a single drive as well as on machines with several drives, the speeds of
which must always be synchronised.
For machines with a single drive, enabling the Powerloss function is sufficient.
For machines with several drives, the DC links must be connected: the Powerloss function must only be enabled on
the drive identified as the master and not on the slaves. The master drive is normally the one that controls the load
with the highest inertia. The master drive sends the
Powerloss nextratio
signal with the ratio between the mo-
tor speed and the speed reference. Line synchronisation can be achieved by connecting the
Powerloss nextratio
Summary of Contents for SIEIDrive ADV100
Page 1: ... Functions description and parameters list SIEIDrive Field oriented vector AC Drive ADV100 ...
Page 28: ...28 ADV100 Functions description and parameters list Ramp freeze Ramp Output Motor speed ...
Page 152: ...152 ADV100 Block Diagrams F Block Diagrams System Diagrams Index Drive overview ...
Page 153: ...ADV100 Block Diagrams 153 References ...
Page 154: ...154 ADV100 Block Diagrams Ramps Braking ...
Page 155: ...ADV100 Block Diagrams 155 Multireference ...
Page 156: ...156 ADV100 Block Diagrams Motorpotentiometer Jog function ...
Page 157: ...ADV100 Block Diagrams 157 Monitor function ...
Page 158: ...158 ADV100 Block Diagrams ...
Page 159: ...ADV100 Block Diagrams 159 Commands ...
Page 160: ...160 ADV100 Block Diagrams ...
Page 161: ...ADV100 Block Diagrams 161 Digital inputs Digital outputs ...
Page 162: ...162 ADV100 Block Diagrams Analog inputs ...
Page 163: ...ADV100 Block Diagrams 163 Analog outputs Encoder config ...
Page 164: ...164 ADV100 Block Diagrams Speed reg gains ...
Page 165: ...ADV100 Block Diagrams 165 Torque config ...
Page 166: ...166 ADV100 Block Diagrams VF parameters ...
Page 167: ...ADV100 Block Diagrams 167 Functions ...
Page 168: ...168 ADV100 Block Diagrams ...
Page 169: ...ADV100 Block Diagrams 169 ...
Page 170: ...170 ADV100 Block Diagrams PID application ...
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