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Rename the German field names of the genetic optimization API to English with full backward compatibility: - English names are canonical and documented in the OpenAPI schema; the German names are still accepted on input via validation aliases and re-emitted in responses as deprecated computed fields - fix visualization receiving the raw German-keyed simulation dict (KeyError: load_wh_per_hour) - rename internal German identifiers (optimize_ems, total_balance, battery_residual_value, self_consumption, extra_data keys) - use amount instead of currency/euro in chart labels and schema descriptions; document currency handling (whole currency units, never cents) in the API description - regenerate openapi.json and generated docs Co-authored-by: Tobias Welz <tobias.wizneteu@gmail.com>
550 lines
21 KiB
Markdown
550 lines
21 KiB
Markdown
## Base configuration for devices simulation settings
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<!-- pyml disable line-length -->
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:::{table} devices
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:widths: 10 20 10 5 5 30
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:align: left
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| Name | Environment Variable | Type | Read-Only | Default | Description |
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| ---- | -------------------- | ---- | --------- | ------- | ----------- |
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| batteries | `EOS_DEVICES__BATTERIES` | `Optional[list[akkudoktoreos.devices.devices.BatteriesCommonSettings]]` | `rw` | `None` | List of battery devices |
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| electric_vehicles | `EOS_DEVICES__ELECTRIC_VEHICLES` | `Optional[list[akkudoktoreos.devices.devices.BatteriesCommonSettings]]` | `rw` | `None` | List of electric vehicle devices |
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| home_appliances | `EOS_DEVICES__HOME_APPLIANCES` | `Optional[list[akkudoktoreos.devices.devices.HomeApplianceCommonSettings]]` | `rw` | `None` | List of home appliances |
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| inverters | `EOS_DEVICES__INVERTERS` | `Optional[list[akkudoktoreos.devices.devices.InverterCommonSettings]]` | `rw` | `None` | List of inverters |
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| max_batteries | `EOS_DEVICES__MAX_BATTERIES` | `Optional[int]` | `rw` | `None` | Maximum number of batteries that can be set |
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| max_electric_vehicles | `EOS_DEVICES__MAX_ELECTRIC_VEHICLES` | `Optional[int]` | `rw` | `None` | Maximum number of electric vehicles that can be set |
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| max_home_appliances | `EOS_DEVICES__MAX_HOME_APPLIANCES` | `Optional[int]` | `rw` | `None` | Maximum number of home_appliances that can be set |
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| max_inverters | `EOS_DEVICES__MAX_INVERTERS` | `Optional[int]` | `rw` | `None` | Maximum number of inverters that can be set |
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| measurement_keys | | `Optional[list[str]]` | `ro` | `N/A` | Return the measurement keys for the resource/ device stati that are measurements. |
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:::
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<!-- pyml enable line-length -->
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<!-- pyml disable no-emphasis-as-heading -->
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**Example Input**
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<!-- pyml enable no-emphasis-as-heading -->
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<!-- pyml disable line-length -->
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```json
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{
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"devices": {
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"batteries": [
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{
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"device_id": "battery1",
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"capacity_wh": 8000,
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"charging_efficiency": 0.88,
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"discharging_efficiency": 0.88,
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"levelized_cost_of_storage_kwh": 0.0,
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"max_charge_power_w": 5000,
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"min_charge_power_w": 50,
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"charge_rates": [
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0.0,
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0.1,
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0.2,
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0.3,
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0.4,
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0.5,
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0.6,
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0.7,
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0.8,
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0.9,
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1.0
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],
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"min_soc_percentage": 0,
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"max_soc_percentage": 100
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}
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],
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"max_batteries": 1,
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"electric_vehicles": [
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{
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"device_id": "battery1",
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"capacity_wh": 8000,
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"charging_efficiency": 0.88,
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"discharging_efficiency": 0.88,
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"levelized_cost_of_storage_kwh": 0.0,
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"max_charge_power_w": 5000,
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"min_charge_power_w": 50,
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"charge_rates": [
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0.0,
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0.1,
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0.2,
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0.3,
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0.4,
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0.5,
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0.6,
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0.7,
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0.8,
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0.9,
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1.0
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],
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"min_soc_percentage": 0,
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"max_soc_percentage": 100
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}
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],
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"max_electric_vehicles": 1,
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"inverters": [],
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"max_inverters": 1,
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"home_appliances": [],
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"max_home_appliances": 1
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}
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}
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```
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<!-- pyml enable line-length -->
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<!-- pyml disable no-emphasis-as-heading -->
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**Example Output**
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<!-- pyml enable no-emphasis-as-heading -->
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<!-- pyml disable line-length -->
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```json
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{
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"devices": {
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"batteries": [
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{
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"device_id": "battery1",
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"capacity_wh": 8000,
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"charging_efficiency": 0.88,
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"discharging_efficiency": 0.88,
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"levelized_cost_of_storage_kwh": 0.0,
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"max_charge_power_w": 5000,
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"min_charge_power_w": 50,
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"charge_rates": [
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0.0,
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0.1,
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0.2,
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0.3,
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0.4,
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0.5,
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0.6,
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0.7,
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0.8,
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0.9,
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1.0
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],
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"min_soc_percentage": 0,
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"max_soc_percentage": 100,
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"measurement_key_soc_factor": "battery1-soc-factor",
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"measurement_key_power_l1_w": "battery1-power-l1-w",
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"measurement_key_power_l2_w": "battery1-power-l2-w",
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"measurement_key_power_l3_w": "battery1-power-l3-w",
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"measurement_key_power_3_phase_sym_w": "battery1-power-3-phase-sym-w",
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"measurement_keys": [
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"battery1-soc-factor",
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"battery1-power-l1-w",
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"battery1-power-l2-w",
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"battery1-power-l3-w",
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"battery1-power-3-phase-sym-w"
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]
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}
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],
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"max_batteries": 1,
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"electric_vehicles": [
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{
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"device_id": "battery1",
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"capacity_wh": 8000,
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"charging_efficiency": 0.88,
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"discharging_efficiency": 0.88,
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"levelized_cost_of_storage_kwh": 0.0,
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"max_charge_power_w": 5000,
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"min_charge_power_w": 50,
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"charge_rates": [
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0.0,
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0.1,
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0.2,
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0.3,
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0.4,
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0.5,
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0.6,
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0.7,
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0.8,
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0.9,
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1.0
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],
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"min_soc_percentage": 0,
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"max_soc_percentage": 100,
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"measurement_key_soc_factor": "battery1-soc-factor",
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"measurement_key_power_l1_w": "battery1-power-l1-w",
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"measurement_key_power_l2_w": "battery1-power-l2-w",
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"measurement_key_power_l3_w": "battery1-power-l3-w",
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"measurement_key_power_3_phase_sym_w": "battery1-power-3-phase-sym-w",
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"measurement_keys": [
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"battery1-soc-factor",
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"battery1-power-l1-w",
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"battery1-power-l2-w",
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"battery1-power-l3-w",
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"battery1-power-3-phase-sym-w"
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]
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}
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],
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"max_electric_vehicles": 1,
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"inverters": [],
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"max_inverters": 1,
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"home_appliances": [],
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"max_home_appliances": 1,
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"measurement_keys": [
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"battery1-soc-factor",
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"battery1-power-l1-w",
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"battery1-power-l2-w",
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"battery1-power-l3-w",
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"battery1-power-3-phase-sym-w",
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"battery1-soc-factor",
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"battery1-power-l1-w",
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"battery1-power-l2-w",
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"battery1-power-l3-w",
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"battery1-power-3-phase-sym-w"
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]
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}
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}
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```
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<!-- pyml enable line-length -->
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### Inverter devices base settings
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<!-- pyml disable line-length -->
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:::{table} devices::inverters::list
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:widths: 10 10 5 5 30
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:align: left
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| Name | Type | Read-Only | Default | Description |
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| ---- | ---- | --------- | ------- | ----------- |
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| ac_to_dc_efficiency | `float` | `rw` | `1.0` | Efficiency of AC to DC conversion for grid-to-battery AC charging (0-1). Set to 0 to disable AC charging. Default 1.0 (no additional inverter loss). |
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| battery_id | `Optional[str]` | `rw` | `None` | ID of battery controlled by this inverter. |
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| dc_to_ac_efficiency | `float` | `rw` | `1.0` | Efficiency of DC to AC conversion for battery discharging to AC load/grid (0-1). Default 1.0 (no additional inverter loss). |
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| device_id | `str` | `rw` | `<unknown>` | ID of device |
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| max_ac_charge_power_w | `Optional[float]` | `rw` | `None` | Maximum AC charging power in watts. null means no additional limit. Set to 0 to disable AC charging. |
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| max_power_w | `Optional[float]` | `rw` | `None` | Maximum power [W]. |
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| measurement_keys | `Optional[list[str]]` | `ro` | `N/A` | Measurement keys for the inverter stati that are measurements. |
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:::
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<!-- pyml enable line-length -->
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<!-- pyml disable no-emphasis-as-heading -->
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**Example Input**
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<!-- pyml enable no-emphasis-as-heading -->
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<!-- pyml disable line-length -->
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```json
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{
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"devices": {
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"inverters": [
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{
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"device_id": "battery1",
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"max_power_w": 10000.0,
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"battery_id": null,
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"ac_to_dc_efficiency": 0.95,
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"dc_to_ac_efficiency": 0.95,
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"max_ac_charge_power_w": null
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}
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]
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}
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}
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```
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<!-- pyml enable line-length -->
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<!-- pyml disable no-emphasis-as-heading -->
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**Example Output**
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<!-- pyml enable no-emphasis-as-heading -->
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<!-- pyml disable line-length -->
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```json
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{
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"devices": {
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"inverters": [
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{
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"device_id": "battery1",
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"max_power_w": 10000.0,
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"battery_id": null,
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"ac_to_dc_efficiency": 0.95,
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"dc_to_ac_efficiency": 0.95,
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"max_ac_charge_power_w": null,
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"measurement_keys": []
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}
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]
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}
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}
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```
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<!-- pyml enable line-length -->
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### Model defining a daily or date time window with optional localization support
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Represents a time interval starting at `start_time` and lasting for `duration`.
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Can restrict applicability to a specific day of the week or a specific calendar date.
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Supports day names in multiple languages via locale-aware parsing.
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Timezone contract:
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``start_time`` is always **naive** (no ``tzinfo``). It is interpreted as a
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local wall-clock time in whatever timezone the caller's ``date_time`` or
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``reference_date`` carries. When those arguments are timezone-aware the
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window boundaries are evaluated in that timezone; when they are naive,
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arithmetic is performed as-is (no timezone conversion occurs).
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``date``, being a calendar ``Date`` object, is inherently timezone-free.
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This design avoids the ambiguity that arises when a stored ``start_time``
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carries its own timezone that differs from the caller's timezone, and keeps
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the model serialisable without timezone state.
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<!-- pyml disable line-length -->
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:::{table} devices::home_appliances::list::time_windows::windows::list
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:widths: 10 10 5 5 30
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:align: left
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| Name | Type | Read-Only | Default | Description |
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| ---- | ---- | --------- | ------- | ----------- |
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| date | `Optional[pydantic_extra_types.pendulum_dt.Date]` | `rw` | `None` | Optional specific calendar date for the time window. Naive — matched against the local date of the datetime passed to contains(). Overrides `day_of_week` if set. |
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| day_of_week | `Union[int, str, NoneType]` | `rw` | `None` | Optional day of the week restriction. Can be specified as integer (0=Monday to 6=Sunday) or localized weekday name. If None, applies every day unless `date` is set. |
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| duration | `Duration` | `rw` | `required` | Duration of the time window starting from `start_time`. |
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| locale | `Optional[str]` | `rw` | `None` | Locale used to parse weekday names in `day_of_week` when given as string. If not set, Pendulum's default locale is used. Examples: 'en', 'de', 'fr', etc. |
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| start_time | `Time` | `rw` | `required` | Naive start time of the time window (time of day, no timezone). Interpreted in the timezone of the datetime passed to contains() or earliest_start_time(). |
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:::
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<!-- pyml enable line-length -->
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<!-- pyml disable no-emphasis-as-heading -->
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**Example Input/Output**
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<!-- pyml enable no-emphasis-as-heading -->
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<!-- pyml disable line-length -->
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```json
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{
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"devices": {
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"home_appliances": [
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{
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"time_windows": {
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"windows": [
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{
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"start_time": "00:00:00.000000",
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"duration": "2 hours",
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"day_of_week": null,
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"date": null,
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"locale": null
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}
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]
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}
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}
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]
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}
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}
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```
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<!-- pyml enable line-length -->
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### Model representing a sequence of time windows with collective operations
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Manages multiple TimeWindow objects and provides methods to work with them
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as a cohesive unit for scheduling and availability checking.
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<!-- pyml disable line-length -->
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:::{table} devices::home_appliances::list::time_windows
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:widths: 10 10 5 5 30
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:align: left
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| Name | Type | Read-Only | Default | Description |
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| ---- | ---- | --------- | ------- | ----------- |
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| windows | `list[akkudoktoreos.config.configabc.TimeWindow]` | `rw` | `required` | List of TimeWindow objects that make up this sequence. |
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:::
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<!-- pyml enable line-length -->
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<!-- pyml disable no-emphasis-as-heading -->
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**Example Input/Output**
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<!-- pyml enable no-emphasis-as-heading -->
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<!-- pyml disable line-length -->
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```json
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{
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"devices": {
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"home_appliances": [
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{
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"time_windows": {
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"windows": []
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}
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}
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]
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}
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}
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```
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<!-- pyml enable line-length -->
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### Home Appliance devices base settings
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<!-- pyml disable line-length -->
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:::{table} devices::home_appliances::list
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:widths: 10 10 5 5 30
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:align: left
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| Name | Type | Read-Only | Default | Description |
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| ---- | ---- | --------- | ------- | ----------- |
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| consumption_wh | `int` | `rw` | `required` | Energy consumption [Wh]. |
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| device_id | `str` | `rw` | `<unknown>` | ID of device |
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| duration_h | `int` | `rw` | `required` | Usage duration in hours [0 ... 24]. |
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| measurement_keys | `Optional[list[str]]` | `ro` | `N/A` | Measurement keys for the home appliance stati that are measurements. |
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| time_windows | `Optional[akkudoktoreos.config.configabc.TimeWindowSequence]` | `rw` | `None` | Sequence of allowed time windows. Defaults to optimization general time window. |
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:::
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<!-- pyml enable line-length -->
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<!-- pyml disable no-emphasis-as-heading -->
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**Example Input**
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<!-- pyml enable no-emphasis-as-heading -->
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<!-- pyml disable line-length -->
|
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```json
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{
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"devices": {
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"home_appliances": [
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{
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"device_id": "battery1",
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"consumption_wh": 2000,
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"duration_h": 1,
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"time_windows": {
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"windows": [
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{
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"start_time": "10:00:00.000000",
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"duration": "2 hours",
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"day_of_week": null,
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"date": null,
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"locale": null
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}
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]
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}
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}
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]
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}
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}
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```
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<!-- pyml enable line-length -->
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|
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<!-- pyml disable no-emphasis-as-heading -->
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**Example Output**
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<!-- pyml enable no-emphasis-as-heading -->
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|
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<!-- pyml disable line-length -->
|
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```json
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{
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"devices": {
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"home_appliances": [
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{
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"device_id": "battery1",
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"consumption_wh": 2000,
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"duration_h": 1,
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"time_windows": {
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"windows": [
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{
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"start_time": "10:00:00.000000",
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"duration": "2 hours",
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"day_of_week": null,
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"date": null,
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"locale": null
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}
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]
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},
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"measurement_keys": []
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}
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]
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}
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}
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```
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<!-- pyml enable line-length -->
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### Battery devices base settings
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<!-- pyml disable line-length -->
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:::{table} devices::batteries::list
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:widths: 10 10 5 5 30
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:align: left
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| Name | Type | Read-Only | Default | Description |
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| ---- | ---- | --------- | ------- | ----------- |
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| capacity_wh | `int` | `rw` | `8000` | Capacity [Wh]. |
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| charge_rates | `Optional[list[float]]` | `rw` | `[0.0, 0.1, 0.2, 0.3, 0.4, 0.5, 0.6, 0.7, 0.8, 0.9, 1.0]` | Charge rates as factor of maximum charging power [0.00 ... 1.00]. None triggers fallback to default charge-rates. |
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| charging_efficiency | `float` | `rw` | `0.88` | Charging efficiency [0.01 ... 1.00]. |
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| device_id | `str` | `rw` | `<unknown>` | ID of device |
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|
| discharging_efficiency | `float` | `rw` | `0.88` | Discharge efficiency [0.01 ... 1.00]. |
|
|
| levelized_cost_of_storage_kwh | `float` | `rw` | `0.0` | Levelized cost of storage (LCOS), the average lifetime cost of delivering one kWh [amount/kWh]. |
|
|
| max_charge_power_w | `Optional[float]` | `rw` | `5000` | Maximum charging power [W]. |
|
|
| max_soc_percentage | `int` | `rw` | `100` | Maximum state of charge (SOC) as percentage of capacity [%]. |
|
|
| measurement_key_power_3_phase_sym_w | `str` | `ro` | `N/A` | Measurement key for the symmetric 3 phase power the battery is charged or discharged with [W]. |
|
|
| measurement_key_power_l1_w | `str` | `ro` | `N/A` | Measurement key for the L1 power the battery is charged or discharged with [W]. |
|
|
| measurement_key_power_l2_w | `str` | `ro` | `N/A` | Measurement key for the L2 power the battery is charged or discharged with [W]. |
|
|
| measurement_key_power_l3_w | `str` | `ro` | `N/A` | Measurement key for the L3 power the battery is charged or discharged with [W]. |
|
|
| measurement_key_soc_factor | `str` | `ro` | `N/A` | Measurement key for the battery state of charge (SoC) as factor of total capacity [0.0 ... 1.0]. |
|
|
| measurement_keys | `Optional[list[str]]` | `ro` | `N/A` | Measurement keys for the battery stati that are measurements. |
|
|
| min_charge_power_w | `Optional[float]` | `rw` | `50` | Minimum charging power [W]. |
|
|
| min_soc_percentage | `int` | `rw` | `0` | Minimum state of charge (SOC) as percentage of capacity [%]. This is the target SoC for charging |
|
|
:::
|
|
<!-- pyml enable line-length -->
|
|
|
|
<!-- pyml disable no-emphasis-as-heading -->
|
|
**Example Input**
|
|
<!-- pyml enable no-emphasis-as-heading -->
|
|
|
|
<!-- pyml disable line-length -->
|
|
```json
|
|
{
|
|
"devices": {
|
|
"batteries": [
|
|
{
|
|
"device_id": "battery1",
|
|
"capacity_wh": 8000,
|
|
"charging_efficiency": 0.88,
|
|
"discharging_efficiency": 0.88,
|
|
"levelized_cost_of_storage_kwh": 0.12,
|
|
"max_charge_power_w": 5000.0,
|
|
"min_charge_power_w": 50.0,
|
|
"charge_rates": [
|
|
0.0,
|
|
0.25,
|
|
0.5,
|
|
0.75,
|
|
1.0
|
|
],
|
|
"min_soc_percentage": 10,
|
|
"max_soc_percentage": 100
|
|
}
|
|
]
|
|
}
|
|
}
|
|
```
|
|
<!-- pyml enable line-length -->
|
|
|
|
<!-- pyml disable no-emphasis-as-heading -->
|
|
**Example Output**
|
|
<!-- pyml enable no-emphasis-as-heading -->
|
|
|
|
<!-- pyml disable line-length -->
|
|
```json
|
|
{
|
|
"devices": {
|
|
"batteries": [
|
|
{
|
|
"device_id": "battery1",
|
|
"capacity_wh": 8000,
|
|
"charging_efficiency": 0.88,
|
|
"discharging_efficiency": 0.88,
|
|
"levelized_cost_of_storage_kwh": 0.12,
|
|
"max_charge_power_w": 5000.0,
|
|
"min_charge_power_w": 50.0,
|
|
"charge_rates": [
|
|
0.0,
|
|
0.25,
|
|
0.5,
|
|
0.75,
|
|
1.0
|
|
],
|
|
"min_soc_percentage": 10,
|
|
"max_soc_percentage": 100,
|
|
"measurement_key_soc_factor": "battery1-soc-factor",
|
|
"measurement_key_power_l1_w": "battery1-power-l1-w",
|
|
"measurement_key_power_l2_w": "battery1-power-l2-w",
|
|
"measurement_key_power_l3_w": "battery1-power-l3-w",
|
|
"measurement_key_power_3_phase_sym_w": "battery1-power-3-phase-sym-w",
|
|
"measurement_keys": [
|
|
"battery1-soc-factor",
|
|
"battery1-power-l1-w",
|
|
"battery1-power-l2-w",
|
|
"battery1-power-l3-w",
|
|
"battery1-power-3-phase-sym-w"
|
|
]
|
|
}
|
|
]
|
|
}
|
|
}
|
|
```
|
|
<!-- pyml enable line-length -->
|