# EMHASS v0.17.1 — reference copy of config.json in YAML form # The actual file deployed to HA is config.json (at /addon_configs/5b918bf2_emhass/config.json) # This YAML is for human readability only. # # System: Deye SUN-12K-SG04LP3-EU + 32 kWh LiFePO4 battery # Location: Latvia, NordPool LV zone # Strategy: profit (minimize grid cost), self-consumption, no grid export hass_url: http://192.168.66.113:8123 long_lived_token: "" costfun: profit optimization_time_step: 30 # minutes historic_days_to_retrieve: 10 method_ts_round: nearest # ── Sensors ────────────────────────────────────────────────────────────────── sensor_power_photovoltaics: sensor.deye_inverter_mqtt_dc_total_power sensor_power_load_no_var_loads: sensor.deye_inverter_mqtt_total_load_power sensor_replace_zero: - sensor.deye_inverter_mqtt_dc_total_power sensor_linear_interp: - sensor.deye_inverter_mqtt_dc_total_power - sensor.deye_inverter_mqtt_total_load_power # ── Grid ───────────────────────────────────────────────────────────────────── maximum_power_from_grid: 16090 # W — contract limit maximum_power_to_grid: 0 # W — no export (self-consumption only) set_total_pv_sell: false set_nodischarge_to_grid: true # battery never exports to grid set_nocharge_from_grid: false # allow grid→battery during cheap hours # ── Electricity pricing ─────────────────────────────────────────────────────── # Dynamic NordPool pricing via automation (14:30 daily). # NordPool prices (passed as list) already include distribution + VAT. load_cost_forecast_method: list photovoltaic_production_sell_price: 0.0 # no feed-in tariff # ── Inverter ───────────────────────────────────────────────────────────────── inverter_is_hybrid: true inverter_ac_output_max: 12000 # W — Deye SUN-12K inverter_ac_input_max: 12000 # W # ── Battery ─────────────────────────────────────────────────────────────────── set_use_battery: true battery_nominal_energy_capacity: 32000 # Wh (32 kWh) battery_discharge_power_max: 11000 # W battery_charge_power_max: 11000 # W battery_discharge_efficiency: 0.96 battery_charge_efficiency: 0.96 battery_minimum_state_of_charge: 0.1 # fraction (= 10%) battery_maximum_state_of_charge: 1.0 # fraction (= 100%) battery_target_state_of_charge: 0.6 # fraction — end-of-day target # ── Deferrable loads ────────────────────────────────────────────────────────── # Add EV here when OpenEVSE is integrated number_of_deferrable_loads: 0 nominal_power_of_deferrable_loads: [] operating_hours_of_each_deferrable_load: [] treat_deferrable_load_as_semi_cont: [] set_deferrable_load_single_constant: [] start_timesteps_of_each_deferrable_load: [] end_timesteps_of_each_deferrable_load: []