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ADE7763ARSZRL bảng dữ liệu(PDF) 31 Page - Analog Devices |
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ADE7763ARSZRL bảng dữ liệu(HTML) 31 Page - Analog Devices |
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31 / 56 page ![]() Data Sheet ADE7763 Rev. C | Page 31 of 56 LINE CYCLE ENERGY ACCUMULATION MODE In line cycle energy accumulation mode, the energy accumu- lation of the ADE7763 can be synchronized to the Channel 2 zero crossing so that active energy accumulates over an integral number of half line cycles. The advantage of summing the active energy over an integral number of line cycles is that the sinusoidal component in the active energy is reduced to 0. This eliminates ripple in the energy calculation. Energy is calculated more accurately and in a shorter time because the integration period is shortened. By using the line cycle energy accumulation mode, the energy calibration can be greatly simplified, and the time required to calibrate the meter can be significantly reduced. The ADE7763 is placed in line cycle energy accumulation mode by setting Bit 7 (CYCMODE) in the mode register. In line cycle energy accumulation mode, the ADE7763 accumulates the active power signal in the LAENERGY register (Address 0x04) for an integral number of line cycles, as shown in Figure 61. The number of half line cycles is specified in the LINECYC register (Address 0x1C). The ADE7763 can accumulate active power for up to 65,535 half line cycles. Because the active power is integrated on an integral number of line cycles, the CYCEND flag in the interrupt status register is set (Bit 2) at the end of a line cycle energy accumulation cycle. If the CYCEND enable bit in the interrupt enable register is enabled, the IRQ output also will go active low. Therefore, the IRQ line can also be used to signal the completion of the line cycle energy accumulation. Another calibration cycle can start as long as the CYCMODE bit in the mode register is set. From Equations 13 and 18, nT nT dt t f f VI dt VI t E 0 2 0 ) 2 cos( 9 . 8 1 ) ( (20) where: n is an integer. T is the line cycle period. Since the sinusoidal component is integrated over an integral number of line cycles, its value is always 0. Therefore, nT VIdt E 0 0 (21) Et VInT (22) Note that in this mode, the 16-bit LINECYC register can hold a maximum value of 65,535. In other words, the line energy accumulation mode can be used to accumulate active energy for a maximum duration of 65,535 half line cycles. At 60 Hz line frequency, this translates to a total duration of 65,535/ 120 Hz = 546 seconds. POSITIVE-ONLY ACCUMULATION MODE In positive-only accumulation mode, the active energy accumulation is only done for positive power, ignoring any occurrence of negative power above or below the no-load threshold, as shown in Figure 62. The CF pulse also reflects this accumulation method when in this mode. Positive-only accumulation mode is activated by setting the MSB of the mode register (MODE[15]) and effects only the active power. The default setting for this mode is off. Transitions in the direction of power flow, going from negative to positive or positive to negative, set the IRQ pin to active low if the PPOS and PNEG bits are set in the interrupt enable register. The corresponding PPOS and PNEG bits in the interrupt status register show which transition has occurred—see the register descriptions in Table 9. PNEG PPOS PPOS INTERRUPT STATUS REGISTERS PPOS PNEG PNEG IRQ NO-LOAD THRESHOLD ACTIVE POWER NO-LOAD THRESHOLD ACTIVE ENERGY Figure 62. Energy Accumulation in Positive-Only Accumulation Mode NO-LOAD THRESHOLD The ADE7763 includes a no-load threshold feature on the active energy that eliminates any creep effects in the meter. This is accomplished because energy does not accumulate if the multiplier output is below the no-load threshold. This threshold is 0.001% of the full-scale output frequency of the multiplier. Compare this value to the IEC1036 specification, which states that the meter must start up with a load equal to or less than 0.4% Ib. This standard translates to 0.0167% of the full-scale output frequency of the multiplier. |
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