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glenn schrooyenandClaude Opus 5 f47f1f0129 TEL-01: P1 ingestion, with the derivation and the age the EMS owns
A Belgian P1 meter publishes two UNSIGNED registers, not one signed figure.
Until now the add-on asked the installer to bridge that gap with a template
sensor, which put the sign convention of the whole control loop in a text box.
This moves it into the EMS: net = import - export, derived once, in one place,
with a test that fails if anyone inverts it.

Two transports behind one contract, chosen by `meter_source`: the HA WebSocket
subscribing to the DSMR integration's entities, and MQTT on a configurable
topic. Everything downstream reads P1Ingest, so switching is a config edit.
`meter_source: off` is the default and keeps the existing meter_entity path,
so no installed system changes until it opts in.

The other half is the timestamp. Every accepted sample is stamped at ingest
with a monotonic clock, `meter_max_age_s` is applied to it, and the age is
published as sensor.p1_sample_age_s for the ESP32's stale-input watchdog. That
entity is recomputed against the clock every second rather than only when a
telegram lands, because HA pushes state only on change: a meter frozen at a
constant reading emits nothing and looks, to anything watching the value,
exactly like a meter that has died. The age tells them apart.

Deliberately absent: any fallback to an inverter-side power figure. The
inverter's own AC power correlates 0.998 with battery power and 0.09 with the
real meter, so failing over to it means regulating against your own output.
A gap stays a gap - a reconnect emits no synthetic sample, and a rejected
telegram never resolves to 0 W or refreshes the timestamp.

Quarter-hour averages are time-weighted over clock-aligned blocks rather than
a mean of samples, so a cadence change cannot bias the capacity-tariff figure,
and only offtake is accumulated so a quarter of pure export averages to 0 kW.
Per-phase import is kept separately: on an unbalanced three-phase load the
phase sum and the connection net are different numbers, and only one of them
is billed.

test_p1.py: 99 checks, runnable with a bare interpreter and no meter. Includes
an end-to-end run of the HA transport against a fake Home Assistant websocket.

Stacked on SAFETY-04; nothing here touches control.py.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
Claude-Session: https://claude.ai/code/session_01Du77usMj8XNKNFZGmUiWDa
2026-08-24 23:16:31 +02:00

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YAML

name: GoodWe RS485 Controller
version: "0.2.1"
slug: goodwe_controller
description: >-
Drives a GoodWe ES/BP battery inverter over RS485 by emulating its smart
meter, holding net grid exchange at zero and running a monthly battery
maintenance cycle.
url: https://gittea.kammenstraatha.duckdns.org/admin/goodwe-addon
arch:
- aarch64
- amd64
- armv7
init: false
startup: application
boot: auto
# Needed to read the meter and to write the ESPHome setpoint number.
homeassistant_api: true
hassio_api: true
# Own diagnostics/operations UI inside HA. This is what a field tech and a
# remote supporter both look at, so it is not optional.
ingress: true
ingress_port: 8099
panel_icon: mdi:battery-sync
panel_title: GoodWe
# Optional: publish status entities by MQTT discovery. `want` rather than
# `need` - the add-on runs fine with no broker, it just publishes nothing.
services:
- mqtt:want
options:
# --- sources (required) ---------------------------------------------------
meter_entity: sensor.p1_meter_active_power
meter_invert: false
soc_entity: ""
batt_entity: ""
batt_invert: false
setpoint_entity: ""
# --- P1 meter ingestion (specs §5.2 / §14 `meter:`) -------------------------
# `off` keeps the original single meter_entity path above, so an existing
# install is untouched until it opts in. ha_dsmr subscribes to the DSMR
# integration's entities over the HA WebSocket; mqtt_p1 reads the topic below.
meter_source: "off"
meter_phases: 1
meter_max_age_s: 30
meter_mqtt_topic: ""
# The two UNSIGNED Belgian registers. The EMS derives net power from them
# (import - export); do NOT point these at a signed template sensor.
p1_import_entity: ""
p1_export_entity: ""
# Optional, in L1..L3 order. Required for the capacity-tariff peak on a
# three-phase connection; the list length must equal meter_phases.
p1_phase_import_entities: []
p1_phase_export_entities: []
# --- control ---------------------------------------------------------------
max_w: 2000
gain: 0.6
slew_w: 1000
deadband_w: 15
target_grid_w: -10
step_w: 10
saturation_w: 500
saturation_cycles: 3
integrator_max_w: 0
heartbeat_s: 10
stale_input_s: 15
auto_start: false
# --- maintenance -----------------------------------------------------------
maintenance_enabled: false
maintenance_interval_days: 28
maintenance_start_hour: 10
maintenance_discharge_w: 2500
maintenance_charge_w: 2500
maintenance_soc_floor: 11
maintenance_soc_target: 99
maintenance_hold_min: 120
# --- tariff / capacity tariff (all optional) ------------------------------
peak_forecast_entity: ""
peak_cap_w: 3500
price_now_entity: ""
price_avg_entity: ""
# --- site ------------------------------------------------------------------
estop_fitted: false
log_level: info
schema:
meter_entity: str
meter_invert: bool
soc_entity: str
batt_entity: str
batt_invert: bool
setpoint_entity: str
meter_source: list(off|ha_dsmr|mqtt_p1)
# ⚠️ 2 is accepted by this range but is not a real Belgian connection. A
# telegram whose phase count disagrees is rejected at ingest and logged, so a
# mis-set 2 shows up immediately as "0 telegrams accepted" rather than as a
# quietly wrong number.
meter_phases: int(1,3)
meter_max_age_s: int(5,300)
meter_mqtt_topic: str?
p1_import_entity: str?
p1_export_entity: str?
p1_phase_import_entities:
- str
p1_phase_export_entities:
- str
max_w: int(100,5000)
gain: float(0.05,1.0)
slew_w: int(50,5000)
deadband_w: int(0,500)
target_grid_w: float(-200,200)
step_w: int(1,100)
saturation_w: int(100,2000)
saturation_cycles: int(1,10)
integrator_max_w: int(0,15000)
heartbeat_s: int(2,25)
stale_input_s: int(5,120)
auto_start: bool
maintenance_enabled: bool
maintenance_interval_days: int(1,90)
maintenance_start_hour: int(0,23)
maintenance_discharge_w: int(500,5000)
maintenance_charge_w: int(500,5000)
maintenance_soc_floor: int(5,30)
maintenance_soc_target: int(50,100)
maintenance_hold_min: int(5,480)
peak_forecast_entity: str?
peak_cap_w: int(500,15000)
price_now_entity: str?
price_avg_entity: str?
estop_fitted: bool
log_level: list(trace|debug|info|warning|error)