fix: PV_in_current ora è la corrente reale lato pannelli
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Build Docker Image for Raspberry Pi / build-and-push (push) Has been cancelled
Precedentemente DATA[25] (corrente SCC→batteria a tensione batteria) veniva pubblicato direttamente come PV_in_current, dando valori errati. Calcolo corretto via conservazione energia nell'SCC (DC-DC converter): P_pv = V_batt × I_scc (potenza SCC output = potenza pannelli) I_pv = P_pv / V_pv (corrente reale pannelli a tensione PV) P_pv = V_pv × I_pv (invariato - solo presentazione diversa) Esempio con: V_pv=240V, V_batt=55V, I_scc=5A Prima: PV_in_current = 5A (corrente SCC a 55V, errata) Dopo: PV_in_current = 1.15A (corrente reale pannelli a 240V, corretta) PV_in_watts = 275W in entrambi i casi (matematicamente invariato)
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@@ -103,20 +103,24 @@ processInverter () {
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[ "${DATA[12]}" ] && pushMQTTData "$inv_id" "Battery_charge_current" "${DATA[12]}"
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[ "${DATA[13]}" ] && pushMQTTData "$inv_id" "Battery_capacity" "${DATA[13]}"
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[ "${DATA[14]}" ] && pushMQTTData "$inv_id" "PV_in_voltage" "${DATA[14]}"
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[ "${DATA[25]}" ] && pushMQTTData "$inv_id" "PV_in_current" "${DATA[25]}"
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[ "${DATA[26]}" ] && pushMQTTData "$inv_id" "Battery_discharge_current" "${DATA[26]}"
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# ─── PV_in_watts calculation ──────────────────────────────────────────────
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# DATA[25] = SCC output current at battery-bus voltage (not at PV panel V).
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# Source: original QPIGS comment "current going out to battery at battery voltage".
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# Formula: Battery_voltage × DATA[25] = power delivered by SCC to battery.
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# ─── PV panel-side power calculation ─────────────────────────────────────
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# DATA[25] is labeled "PV input current" by the inverter but is actually
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# the SCC *output* current flowing to the battery at battery voltage.
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# The inverter protocol does NOT expose the real panel-side current directly.
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#
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# The SCC is a DC-DC converter: power_in ≈ power_out (ignoring ~5% losses).
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# P_pv = V_batt × I_scc (SCC output power = panel power)
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# I_pv = P_pv / V_pv (real panel current at panel voltage)
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#
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# Edge case - battery fully charged (DATA[25] = 0):
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# If STATUS b7=1 (SCC_OK) and STATUS b2=1 (line_loss = no AC grid),
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# solar is feeding the load directly. Use Load_watt as proxy.
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# If AC grid is present (line_loss=0), solar just floats battery → 0W is correct.
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# If SCC_OK (b7=1) and line_loss (b2=1, no AC grid) → solar feeds load directly.
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# Best proxy: Load_watt (solar production = what the load is consuming).
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# If AC grid is present → solar floats battery, nothing meaningful to report.
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local BATT_V="${DATA[11]:-0}"
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local SCC_A="${DATA[25]:-0}"
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local PV_V="${DATA[14]:-0}"
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local LOAD_W="${DATA[9]:-0}"
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local STATUS="${DATA[19]:-00000000}"
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@@ -126,17 +130,32 @@ processInverter () {
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local SCC_OK="${STATUS:0:1}"
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local LINE_LOSS="${STATUS:5:1}"
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local PV_WATTS
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local PV_WATTS PV_CURRENT
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if awk -v v="$SCC_A" 'BEGIN{exit !(v+0 > 0)}' 2>/dev/null; then
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# SCC delivering current to battery
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# SCC delivering current to battery: compute panel-side values
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# P_pv = V_batt × I_scc
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PV_WATTS=$(echo "$BATT_V $SCC_A" | awk '{printf "%.1f", $1 * $2}')
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# I_pv = P_pv / V_pv (real current from panels at panel voltage)
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if awk -v v="$PV_V" 'BEGIN{exit !(v+0 > 0)}' 2>/dev/null; then
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PV_CURRENT=$(echo "$PV_WATTS $PV_V" | awk '{printf "%.2f", $1 / $2}')
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else
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PV_CURRENT="0.00"
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fi
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elif [ "$SCC_OK" = "1" ] && [ "$LINE_LOSS" = "1" ]; then
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# SCC OK, battery full, no AC grid → solar feeds load
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# SCC OK, battery full, no AC grid → solar feeds load directly
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PV_WATTS="$LOAD_W"
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if awk -v v="$PV_V" 'BEGIN{exit !(v+0 > 0)}' 2>/dev/null; then
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PV_CURRENT=$(echo "$PV_WATTS $PV_V" | awk '{printf "%.2f", $1 / $2}')
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else
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PV_CURRENT="0.00"
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fi
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else
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PV_WATTS="0.0"
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PV_CURRENT="0.00"
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fi
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pushMQTTData "$inv_id" "PV_in_watts" "$PV_WATTS"
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pushMQTTData "$inv_id" "PV_in_current" "$PV_CURRENT"
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pushMQTTData "$inv_id" "PV_in_watts" "$PV_WATTS"
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# Watt-hours (approximated from polling interval = 30s = 1/120 hour)
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local PV_WH=$(echo "$PV_WATTS" | awk '{printf "%.4f", $1 / 120}')
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