glenn schrooyenandClaude Opus 5 505a847d85 TEL-01: P1 ingestion, with the derivation and the sample age the EMS owns
Evidence at sign-off: 122 checks in test_p1.py, 14 mutations all red with the
tree restored byte-identical, and an end-to-end run of the HA transport against
a fake Home Assistant websocket server with a real auth handshake. Age
semantics verified live rather than from fixtures - a real 2.2 s sleep with no
telegram arriving, age climbing 2.2004 s.

The deliverable that matters beyond this ticket is sensor.p1_sample_age_s:
recomputed against a monotonic clock and republished ~1 Hz rather than stamped
per telegram, so a meter frozen at a constant value - which pushes no state
change and therefore emits nothing - still shows an age that climbs. SAFETY-01's
firmware subscribes to it and trips on has_state() && state >= max_age_s.

Two blockers on the way, both of which would have shipped. With meter_source
off - the default, chosen for zero regression - the age was published anyway
and climbed without bound, which would have crossed max_age_s within half a
minute and pinned every installed inverter at 0 W. And a reconnect emitted a
synthetic sample that reset the age, hiding an outage from the watchdog that
exists to catch it, contradicting the module's own docstring while a test
asserted the violation.

Not verifiable without hardware, and not claimed: real DSMR entity ids and
units, whether a real P1 MQTT bridge matches the documented strict schema, the
0.35 s debounce against real telegram timing, and MQTT reconnect against a real
broker.

Known limits, both documented and filed as SAFETY-12: mqtt_p1 cannot detect a
frozen bridge that keeps republishing, and a value-frozen meter stops the
control loop cycling at all - the latter pre-existing and affecting the legacy
meter_entity path today.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-08-24 23:17:34 +02:00

GoodWe RS485 Controller — Home Assistant add-on repository

Replaces a GoodWe battery inverter's vendor controller with a local one: holds net grid exchange at zero by emulating the inverter's smart meter over RS485, and runs the monthly battery maintenance cycle the vendor box was doing.

repository.yaml            add-on repository metadata
goodwe_controller/         the add-on
  config.yaml              manifest + options schema (the per-site config form)
  app/                     the controller
    control.py             the control law — pure functions, no I/O
    maintenance.py         the monthly cycle state machine
    hass.py                Supervisor/Core API access
    store.py               persistent state in /data
    mqtt.py                optional status entities
    web.py                 ingress UI
    main.py                orchestration, heartbeat, failsafe behaviour
  test_control.py          runnable checks — no framework needed
  test_maintenance.py      runnable checks — walks a full cycle in fake time
  DOCS.md                  the add-on's documentation tab
firmware/goodwe-master.yaml  ESPHome config for the T-CAN485
estop/rs485_log.py           optional RS485 e-stop / bus witness
docs/GoodWe-RS485-Field-Guide.pdf  the guide techs carry (10pp, A4)
docs/build_guide.py          its single source - rebuilds the HTML and PDF
FIELD-GUIDE.md             how to edit and rebuild the guide

Picking this up after a break? Read HANDOVER.md first — current state, what is known broken, and what to do next.

Install

Settings → Add-ons → Add-on store → ⋮ → Repositories → add

https://gittea.kammenstraatha.duckdns.org/admin/goodwe-addon

then install GoodWe RS485 Controller.

⚠️ The repository must be PUBLIC for this to work. Home Assistant clones it anonymously; against a private repo the store shows nothing and gives no useful error. If it must stay private, install locally instead: copy goodwe_controller/ into the machine's /addons/ folder, then ha store reload — it appears as a Local add-on.

⚠️ Bump version: in goodwe_controller/config.yaml for every change. Supervisor keys the built image by that version, so without a bump it silently reuses the old image and your fix appears not to work — on your bench and on every client's machine.

Requires Home Assistant OS or Supervised. Add-ons cannot be installed on HA Container or Core.

Read this first

The inverter holds its last command forever. It has no meter-timeout of its own — a controller that dies mid-command leaves the battery running until a human intervenes. Measured on real hardware: 5 kW of discharge held for 113 seconds after a controller went silent.

Three layers exist because of that, and only the third covers the Home Assistant machine itself dying:

  1. ESP32 watchdog — no fresh setpoint for ~30 s → command 0 W, and keep commanding it.
  2. Wind-down before firmware updates — 0 W written before the update starts.
  3. RS485 e-stop (optional) — writes 0 W after 30 s of total bus silence.

Sites sold without the e-stop must have the acknowledgement in FIELD-GUIDE.md §10 signed.

Development

The control law and the maintenance machine are pure Python with no Home Assistant imports, so they run anywhere:

cd goodwe_controller
python3 test_control.py
python3 test_maintenance.py

Both must pass before shipping any change. They are not unit-test theatre — each assertion corresponds to a rule whose absence produced an observed failure on real hardware, and the comments in control.py say which.

Compatibility

Check the serial number, not the model name. Characters 6-8 of the serial are the platform tag:

tag platform verdict
ESU EMU ESA BPS BPU EMJ IJL 105 — ES/EM/BP, AA55-era meter bus supported
SPB SPN 745 — SBP G2 (GW…-SBP-20) no
ESN ESC 745 — ES G2 (GW…-ES-20) no
ETU EHU BTU … 205/745/753 — ET/EH/BT hybrids no
SDT DST MSU NSU … PV-only inverters — no battery to control no

A "-20" or "G2" suffix means a different platform with a different meter protocol. The tags come from the goodwe library's PLATFORM_105_MODELS, which is also what Home Assistant's own integration uses to pick a protocol.

  • GoodWe ES / BP family inverters (AA55 / RS485 meter-bus generation)
  • The protocol is reverse-engineered. There is no vendor contract, and a firmware change on GoodWe's side could break every installation at once. Say so when you sell it.
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