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ADE7858ACPZ Datasheet(PDF) 40 Page - Analog Devices

Part # ADE7858ACPZ
Description  Poly Phase Multifunction Energy Metering IC with per Phase Active and Reactive Powers
PDF  76 Pages
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Manufacturer  AD [Analog Devices]
Direct Link  http://www.analog.com
Logo AD - Analog Devices

ADE7858ACPZ Datasheet(HTML) 40 Page - Analog Devices

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ADE7858
Preliminary Technical Data
Rev. PrA| Page 40 of 76
0x3FFF FFFF to 0x4000 0000. If the reactive power is negative,
the var-hr register becomes half full when it decrements from
0xC000 0000 to 0xBFFF FFFF.
Setting bit 2 in MASK0[31:0] register enables the REHF
interrupt. If enabled, the
0
IRQ pin is set low and the status bit
is set to 1 whenever one of the energy registers xVARHR (for
REHF interrupt), x=A, B, C becomes half full. The status bit is
cleared and
0
IRQ pin is set back high by writing STATUS0
register with the corresponding bit set to 1.
Setting bit 6 (RSTREAD) of LCYMODE[7:0] register enables a
read-with-reset for all var-hr accumulation registers, that is, the
registers are reset to 0 after a read operation.
v
A
i
A
HPFDIS[23:0]
HPF
AVGAIN
Digital
Integrator
AIGAIN
APHCAL
AVAROS
ACCUMULATOR
VARTHR[47:0]
32 bit register
AVARHR[31:0]
Digital Signal Processor
Total
Reactive
Power
Algorithm
REVRPA bit in
STATUS0[31:0]
AVARGAIN
HPFDIS[23:0]
Figure 45. ADE7858 Total Reactive Energy Accumulation
Integration Time Under Steady Load
The discrete time sample period (T) for the accumulation
register is 125μs (1/8KHz). With full-scale pure sinusoidal
signals on the analog inputs, a 90° phase difference between the
voltage and the current signal (the largest possible reactive
power), the average word value representing the reactive power is
PMAX=33,516,139=0x1FF6A6B. If the VARTHR[47:0]
threshold is set at PMAX level, this means the DSP generates a
pulse that is added at var-hr registers every 125 μs.
The maximum value that can be stored in the var-hr
accumulation register before it overflows is 231 − 1 or
0x7FFFFFFF. The integration time is calculated as
s
55
min
33
h
74
s
125
FFFF
,
FFF
7
x
0
Time
(35)
Energy Accumulation Modes
The reactive power accumulated in each var-hr accumulation
32-bit register (AVARHR, BVARHR, CVARHR) depends on the
configuration of bits 5, 4 (CONSEL) in the ACCPMODE[7:0]
register, in correlation with the watt-hr registers. The different
configurations are described in Table 15. Note that IA’/IB’/IC’
are the phase-shifted current waveforms.
Table 15. Inputs to VAR-Hr Accumulation Registers
CONSEL[1,0]
AVARHR,
AFVARHR
BVARHR,
BFVARHR
CVARHR,
CFVARHR
00
VA × IA’
VB × IB’
VC × IC’
01
VA × IA’
0
VC × IC’
10
VA x IA’
VB × IB’
VB=-VA-VC
VC x IC’
11
VA x IA’
VB × IB’
VB=-VA
VC × IC’
Bits 3, 2 (VARACC[1:0]) in ACCMODE[7:0] register determine
how CF frequency output may be generated function of the
total active powers. While the var-hr accumulation registers
accumulate the reactive power in a signed format, the frequency
output may be generated in signed mode or in sign adjusted
mode, function of VARACC[1:0]. See Energy to Frequency
Conversion chapter for details.
Line Cycle Reactive Energy Accumulation Mode
As mentioned in Line Cycle Active Energy Accumulation Mode
section, in line cycle energy accumulation mode, the energy
accumulation can be synchronized to the voltage channel zero
crossings so that reactive energy can be accumulated over an
integral number of half line cycles. In this mode, the ADE7858
transfers the reactive energy accumulated in the 32-bit internal
accumulation registers into xVARHR[31:0], x=A,B,C registers
after an integral number of line cycles, as shown in Figure 46.
The number of half line cycles is specified in the
LINECYC[15:0] register.
The line cycle reactive energy accumulation mode is activated
by setting bit 1 (LVAR) in the LCYCMODE[7:0] register. The
total reactive energy accumulated over an integer number of
ahlf line cycles or zero crossings is accumulated in the var-hr
accumulation registers after the LINECYC number of zero
crossings is detected. When using the line cycle accumulation
mode, bit 6 (RSTREAD) of the LCYCMODE[7:0] register
should be set to Logic 0 because the read with reset of var-hr
registers is not available in this mode.



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