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ADE7762(Rev0) Ver la hoja de datos (PDF) - Analog Devices

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ADE7762 Datasheet PDF : 28 Pages
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ADE7762
HPF AND OFFSET EFFECTS
Figure 23 shows the effect of offsets on the active power
calculation. An offset on the current channel and the voltage
channel contributes a dc component after multiplication, as
shown in Figure 23. Because this dc component is extracted by
the LPF and is used to generate the active power information
for each phase, the offsets can contribute a constant error to the
total active power calculation. The HPF in the current channels
avoids this problem easily. By removing the offset from at least
one channel, no error component can be generated at dc by the
multiplication. Error terms at cos(ωt) are removed by the LPF
and the digital-to-frequency conversion (see the Digital-to-
Frequency Conversion) section.
( ) ( ) V cos(ωt ) + VOS × I cos(ωt ) + IOS =
V×I
2
+ VOS × I OS
+ VOS
× I cos(ωt ) + IOS ×V cos(ωt )
(10)
+ V × I × cos(2ωt )
2
VOS × IOS
V× I
2
DC COMPONENT (INCLUDING ERROR TERM)
IS EXTRACTED BY THE LPF FOR REAL
POWER CALCULATION
IOS × V
VOS × I
0
ω
2ω
FREQUENCY – RAD/S
Figure 23. Effect of Channel Offset on the Active Power Calculation
The HPF in the current channels has an associated phase response
that is compensated for on-chip. Figure 24 and Figure 25 show the
phase error between channels with the compensation network.
The ADE7762 is phase compensated up to 1 kHz as shown. This
ensures correct active harmonic power calculation even at low
power factors.
0.07
0.06
0.05
0.04
0.03
0.02
0.01
0
–0.01
0
100 200 300 400 500 600 700 800 900 1000
FREQUENCY (Hz)
Figure 24. Phase Error Between Channels (0 Hz to 1 kHz)
0.010
0.008
0.006
0.004
0.002
0
–0.002
–0.004
40
45
50
55
60
65
70
FREQUENCY (Hz)
Figure 25. Phase Error Between Channels (40 Hz to 70 Hz)
Rev. 0 | Page 20 of 28

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