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ADE7752B Arkusz danych(PDF) 14 Page - Analog Devices |
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ADE7752B Arkusz danych(HTML) 14 Page - Analog Devices |
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14 / 27 page ![]() ADE7752B Preliminary Technical Data Rev. PrA | Page 14 of 27 This is the correct active power calculation. INSTANTANEOUS ACTIVE POWER SIGNAL INSTANTANEOUS POWER SIGNAL INSTANTANEOUS ACTIVE POWER SIGNAL INSTANTANEOUS POWER SIGNAL V× I 2 ×cos(60 °) V× I 2 60 ° CURRENT CURRENT VOLTAGE VOLTAGE 0V 0V Figure 16. DC Component of Instantaneous Power Signal NONSINUSOIDAL VOLTAGE AND CURRENT The active power calculation method also holds true for non- sinusoidal current and voltage waveforms. All voltage and current waveforms in practical applications have some harmonic content. Using the Fourier Transform, instantaneous voltage and current waveforms can be expressed in terms of their harmonic content () () n n n o t n V V t v α + ω × × + = ∑ ∞ = sin 2 0 (2) where: v (t) is the instantaneous voltage. VO is the average value. Vn is the rms value of voltage harmonic n. and α n is the phase angle of the voltage harmonic. () () n n n O t n I V I t i β ω × × + = ∑ ∞ = sin 2 0 (3) where: i(t) is the instantaneous current. IO is the dc component. In is the rms value of current harmonic n. βn is the phase angle of the current harmonic. Using Equations 2 and 3, the active power, P, can be expressed in terms of its fundamental active power (P1) and harmonic active power (PH). P = P1 + PH where: 1 1 1 1 1 1 1 cos β α φ φ − = × = I V P (4) n n n n n n H n I V P β − α = φ φ × = ∑ ∞ = cos 1 (5) As can be seen from Equation 5, a harmonic active power component is generated for every harmonic, provided that harmonic is present in both the voltage and current waveforms. The power factor calculation has been shown to be accurate in the case of a pure sinusoid. Therefore, the harmonic active power also correctly accounts for power factor since harmonics are made up of a series of pure sinusoids. A limiting factor on harmonic measurement is the bandwidth. On the ADE7752B, the bandwidth of the active power measurement is 14 kHz with a master clock frequency of 10 MHz. |
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