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STPMC1 데이터시트(PDF) 69 Page - STMicroelectronics

부품명 STPMC1
상세설명  Programmable poly-phase energy calculator IC
PDF  77 Pages
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제조업체  STMICROELECTRONICS [STMicroelectronics]
홈페이지  http://www.st.com
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STPMC1 데이터시트(HTML) 69 Page - STMicroelectronics

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STPMC1
Energy calculation algorithm
Doc ID 15728 Rev 6
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In case of a non Rogowski sensor, the corresponding products are:
Equation 32
P1 = vd vsi = - AC kDIFkINT cos (ω t) cos (ω t + ϕ) = - AC [cos ϕ + cos (2 ω t + ϕ)] / 2
Equation 33
P2 = vdi vs = AC kDIFkINT sin (ω t) sin (ω t + ϕ) = AC [cos ϕ - cos (2 ω t + ϕ)] / 2
Then a subtraction of P1 from P2 is performed:
Equation 34
P = (P2 - P1) / 2 = (AB cos ϕ) kINT / 2 = (UkDIkL cos ϕ) kINT / 2 = URMS IRMS cos ϕ kP
where:
Equation 35
kP = kD kL kINT
This gives the same result for P in case of non Rogowski sensor, substituting B and kL kINT
with C and kS:
Equation 36
P = (P2 - P1) / 2 = (AC cos ϕ) / 2 = (UkDIkS cos ϕ) / 2 = URMS IRMS cos ϕ kP
where:
Equation 37
kP = kD kS
The result in
Equation 35 and Equation 36 is proportional to the DC part of active power of
line. The division by 2 is a feature of
ΔΣ subtractor. The absence of harmonic components
eliminates the spread of results due to asynchronism with the line. This fact enables fast a
calibration procedure which is used to set the target constant of meter kP.
A sensitivity analysis of kP yields:
Equation 38
ΔkP/kP = ΔL/L + R1 / (R1+R2)(ΔR2/R2 - ΔR1/R1) + ΔAU/AU + ΔAI/AI - 2 ΔVREF/VREF
Equation 39
ΔkP/kP = ΔRS / RS + R1 / (R1+R2)(ΔR2/R2 - ΔR1/R1) + ΔAU/AU + ΔAI/AI - 2 ΔVREF/VREF
It is clear that the device is responsible for AU, AI and VREF parts. The parts kU, kI and kINT
are omitted, because they are not subject to aging or temperature variations due to digital
implementation.
10.2
Reactive energy calculation
The natural reactive power (ART = 0) of the line is computed as follows.
First, 16-bit voltage from the 3rd stage (
Equation 20 or Equation 28) is multiplied by the
current stream from the 1st stage (
Equation 14 or Equation 23) and the frequency



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