Mains Supply Interference/Harmonics; General Aspects Of Harmonics Emission - Danfoss VLT DriveMotor FCP 106 Design Manual

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System Integration
3
3
Danfoss
MCT 10
PLC
1
Start/stop
2
2-speed reference
Illustration 3.1 Example of Control Structures

3.3 Mains Supply Interference/Harmonics

3.3.1 General Aspects of Harmonics
Emission
A drive takes up a non-sinusoidal current from mains,
which increases the input current I
current is transformed via a Fourier analysis and split up
into sine-wave currents with different frequencies, that is,
different harmonic currents I
frequency:
Harmonic currents
Hz
Table 3.1 Harmonic Currents
The harmonic currents increase the heat losses in the
installation (transformer, cables) but they do not affect the
power consumption directly. Increased heat losses can lead
to overload of the transformer and high temperature in the
cables. Therefore, keep the harmonics at a low level by:
Using drives with internal harmonic filters.
Using advanced external filters (active or passive).
28
®
VLT
DriveMotor FCP 106
1
2
3
4
. A non-sinusoidal
RMS
with 50 Hz as the basic
n
I
I
I
1
5
7
50
250
350
Danfoss A/S © 12/2018 All rights reserved.
3
Closed-loop process control
Combined fieldbus and traditional control signals
Illustration 3.2 Filters
NOTICE
Some of the harmonic currents can disturb communi-
cation equipment connected to the same transformer or
cause resonance with power factor correction batteries.
To ensure low harmonic currents, the drive is equipped
with DC-link coils as standard. These coils normally reduce
the input current I
by 40%.
RMS
The voltage distortion on the mains supply voltage
depends on the size of the harmonic currents multiplied
by the mains impedance for the frequency in question. The
total voltage distortion, THDv, is calculated based on the
individual voltage harmonics using this formula:
2
2
2
THD % =
U
5   +  U
7   +  ...  +  U
N
(U
% of U)
N
4
MG03M302

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