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AN2299 датащи(PDF) 19 Page - STMicroelectronics

номер детали AN2299
подробное описание детали  Fast digital calibration procedure
PDF  26 Pages
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производитель  STMICROELECTRONICS [STMicroelectronics]
домашняя страница  http://www.st.com
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AN2299 датащи(HTML) 19 Page - STMicroelectronics

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AN2299
Phase calibration
Rev2
19/26
4
Phase calibration
4.1
Phase error definition
STPM01 does not introduce any phase shift between voltage and current channel.
However, voltage and current signals come from transducers, which could have inherent
phase errors. Phase shift is usually introduced by the current sensor, since the voltage
sensor, normally a resistor divider, does not introduce any delay. For example, a phase error
of 0.1° to 0.3° is not uncommon for a current transformer (CT). These phase errors can vary
from part to part, and they must be corrected in order to perform accurate power
calculations.
At phase angle current to voltage
φ= 0° (power factor PF = 1) the amplitude errors of
voltages and currents determine the actual accuracy of the instrument.
In this case there is no phase shift between voltage and current and Eq. 1 becomes:
This is the target measured power to reach with calibration.
At phase angles other than zero, e.g. ±60° (PF = 0.5) the phase angle errors between
voltages and currents of each phase also affect the actual accuracy in addition to the
amplitude errors described above.
Let us assume that voltage and current RMS values are already calibrated, so they do not
introduce any error in measured power.
Figure 5.
Influence of phase angle errors in power measurement
Formula for the relative error of power can be expressed as:
PU
I
=
Eq. 31
PU
I
φ
cos
=
real active power;
P'
UI
φδ
+
()
cos
=
measured active power;
φ[°]
‘=cos(φ−δ)
=cosφ
‘=cos(
φ+δ)
P
P
P
e
P'
P
-----
1
100
Φδ
+
()
cos
φ
cos
-----------------------------
1
=
100
=
[%]
Eq. 32



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