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ADE9078ACPZ Datenblatt(PDF) 32 Page - Analog Devices

Teilenummer ADE9078ACPZ
Bauteilbeschribung  High Performance
PDF  108 Pages
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Hersteller  AD [Analog Devices]
Direct Link  http://www.analog.com
Logo AD - Analog Devices

ADE9078ACPZ Datenblatt(HTML) 32 Page - Analog Devices

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Data Sheet
ADE9078
Rev. 0 | Page 31 of 107
FREQUENCY (Hz)
40
45
50
60
65
55
70
80
75
85
90
Figure 46. Digital Integrator Magnitude Response from 40 Hz to 90 Hz,
DICOEFF = 0xFFFFE000
FREQUENCY (Hz)
40
45
50
60
65
55
70
80
75
85
90
Figure 47. Digital Integrator Phase Response from 40 Hz to 90 Hz, DICOEFF =
0xFFFFE000
The recommended DICOEFF value is 0xFFFFE000.
Phase Compensation
The ADE9078 phase compensation uses a digital filter to
achieve a phase adjustment of ±0.001°. This high resolution
improves the total active energy and reactive energy
performance at low power factors.
The phase calibration range is −15° to +4.5° at 50 Hz.
To achieve this phase compensation, the voltage channel is
delayed by one 4 kSPS sample, 4.5° at 50 Hz.
°
×
=
360
DSP
LINE
f
f
Delay
Channel
Voltage
°
=
°
×
=
5
.
4
360
4000
50
Delay
Channel
Voltage
The current channel is then delayed by a digital filter, according
to the value programmed into the xPHCALx register. The resulting
phase correction depends on the value in the xPHCALx register.
The following equation gives the phase correction between the
input current and voltage after the combined voltage and
current delays. In the following formula, phase correction is
positive to correct a current that lags the voltage, and phase
correction is negative to correct a situation where the current leads
the voltage, such as occurs with a current transformer:
×
×
+
×
×
+
×
=
ω
ω
ω
ω
cos
2
1
sin
2
arctan
cos
2
sin
arctan
(Degrees)
27
27
27
xPHCALx
xPHCALx
xPHCALx
Correction
Phase
where ω = 2π × fLINE/fDSP.
Calculate the xPHCALx register value can from the desired
phase correction according to the following equation:
(
)
(
)
27
2
2
sin
sin
sin
×
+
=
xPHALx
ϕ
ω
ω
ω
ϕ
For example, if fLINE = 50 Hz, fDSP = 4 kHz, and the current leads
the voltage by 0.1°, the phase correction = −0.1°. Write
xPHCALx = 0xFFE9 7889 to correct for this phase difference.
ω = 2π × 50/4000 = 0.07854
(
)
(
)
(
)
(
)
(
)
7889
9
xFFE
0
471
,
476
,
1
2
1
.
0
07854
.
0
2
sin
07854
.
0
sin
07854
.
0
1
.
0
sin
27
=
=
×
×
+
=
RADIANS
RADIANS
xPHALx
DELAY V BY
ONE SAMPLE
4.5° AT 50Hz
INPUT
VOLTAGE
OUTPUT
VOLTAGE
DELAY I
BY UP TO
19.5°
INPUT
CURRENT
CURRENT
TRANSFORMER
SENSOR:
CURRENT LEADS
VOLTAGE
OUTPUT
CURRENT
I LEADS V BY UP TO 15°
PHASE COMPENSATION = –15°
ADE9078
Figure 48. Phase Compensation Example for Current Transformer, Where the
Current Leads the Voltage
ADE9078
DELAY V BY
ONE SAMPLE
4.5
° AT 50Hz
INPUT
VOLTAGE
OUTPUT
VOLTAGE
DELAY I
BY 0°
INPUT
CURRENT
CURRENT LAGS
VOLTAGE
OUTPUT
CURRENT
I LAGS V BY UP TO 4.5
°
PHASE CORRECTION = +4.5
°
Figure 49. Phase Compensation Example Where Current Lags Voltage



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