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The `FeedInTariffEnergyCharts` provider uses the raw Energy-Charts day-ahead market price as the feed-in tariff. It stores prices in `feed_in_tariff_wh` without adding electricity import charges or VAT. The data is loaded from the Energy-Charts `/price` endpoint for the configured bidding zone. The native Energy-Charts resolution, including quarter-hour data, is retained. Energy-Charts usually supplies prices only for the published day-ahead period. If that data does not cover the complete configured prediction horizon, the provider extends it as follows: - With more than 800 hours of history, an ETS (Holt-Winters exponential smoothing) forecast with weekly seasonality is used. - With more than 168 hours of history, an ETS forecast with daily seasonality is used. - With less history, the median of the available values is used as a constant fallback. The seasonal periods are adjusted to the source resolution. For example, quarter-hour data uses four values per hour. Values already supplied by Energy-Charts are kept unchanged; only missing future slots after the last published price are forecast. Consequently, a 15-minute optimization uses four forecast values per hour without converting them to hourly averages. Signed-off-by: Andreas Schmitz <akkudoktor.net> Signed-off-by: Bobby Noelte <b0661n0e17e@gmail.com>
164 lines
6.7 KiB
Python
164 lines
6.7 KiB
Python
import pytest
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from pydantic import ValidationError
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from akkudoktoreos.core.coreabc import get_prediction
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from akkudoktoreos.prediction.elecpriceakkudoktor import ElecPriceAkkudoktor
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from akkudoktoreos.prediction.elecpriceenergycharts import ElecPriceEnergyCharts
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from akkudoktoreos.prediction.elecpricefixed import ElecPriceFixed
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from akkudoktoreos.prediction.elecpriceimport import ElecPriceImport
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from akkudoktoreos.prediction.elecpricetibber import ElecPriceTibber
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from akkudoktoreos.prediction.feedintariffenergycharts import FeedInTariffEnergyCharts
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from akkudoktoreos.prediction.feedintarifffixed import FeedInTariffFixed
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from akkudoktoreos.prediction.feedintariffimport import FeedInTariffImport
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from akkudoktoreos.prediction.loadakkudoktor import (
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LoadAkkudoktor,
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LoadAkkudoktorAdjusted,
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)
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from akkudoktoreos.prediction.loadimport import LoadImport
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from akkudoktoreos.prediction.loadvrm import LoadVrm
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from akkudoktoreos.prediction.prediction import (
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Prediction,
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PredictionCommonSettings,
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)
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from akkudoktoreos.prediction.pvforecastakkudoktor import PVForecastAkkudoktor
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from akkudoktoreos.prediction.pvforecastforecastsolar import PVForecastForecastSolar
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from akkudoktoreos.prediction.pvforecastimport import PVForecastImport
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from akkudoktoreos.prediction.pvforecastpvnode import PVForecastPVNode
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from akkudoktoreos.prediction.pvforecastsolcast import PVForecastSolcast
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from akkudoktoreos.prediction.pvforecastvrm import PVForecastVrm
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from akkudoktoreos.prediction.weatherbrightsky import WeatherBrightSky
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from akkudoktoreos.prediction.weatherclearoutside import WeatherClearOutside
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from akkudoktoreos.prediction.weatherimport import WeatherImport
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from akkudoktoreos.prediction.weatheropenmeteo import WeatherOpenMeteo
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@pytest.fixture
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def prediction():
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"""All EOS predictions."""
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return get_prediction()
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@pytest.fixture
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def forecast_providers():
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"""Fixture for singleton forecast provider instances."""
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return [
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ElecPriceAkkudoktor(),
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ElecPriceEnergyCharts(),
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ElecPriceFixed(),
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ElecPriceImport(),
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ElecPriceTibber(),
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FeedInTariffEnergyCharts(),
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FeedInTariffFixed(),
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FeedInTariffImport(),
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LoadAkkudoktor(),
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LoadAkkudoktorAdjusted(),
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LoadVrm(),
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LoadImport(),
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PVForecastAkkudoktor(),
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PVForecastVrm(),
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PVForecastPVNode(),
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PVForecastForecastSolar(),
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PVForecastSolcast(),
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PVForecastImport(),
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WeatherBrightSky(),
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WeatherClearOutside(),
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WeatherOpenMeteo(),
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WeatherImport(),
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]
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@pytest.mark.parametrize(
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"field_name, invalid_value, expected_error",
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[
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("hours", -1, "Input should be greater than or equal to 0"),
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("historic_hours", -5, "Input should be greater than or equal to 0"),
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],
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)
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def test_prediction_common_settings_invalid(field_name, invalid_value, expected_error, config_eos):
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"""Test invalid settings for PredictionCommonSettings."""
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valid_data = {
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"hours": 48,
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"historic_hours": 24,
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}
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assert PredictionCommonSettings(**valid_data) is not None
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valid_data[field_name] = invalid_value
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with pytest.raises(ValidationError, match=expected_error):
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PredictionCommonSettings(**valid_data)
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def test_initialization(prediction, forecast_providers):
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"""Test that Prediction is initialized with the correct providers in sequence."""
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assert isinstance(prediction, Prediction)
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for idx, provider in enumerate(prediction.providers):
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assert provider.provider_id() == forecast_providers[idx].provider_id()
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def test_provider_sequence(prediction):
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"""Test the provider sequence is maintained in the Prediction instance."""
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assert isinstance(prediction.providers[0], ElecPriceAkkudoktor)
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assert isinstance(prediction.providers[1], ElecPriceEnergyCharts)
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assert isinstance(prediction.providers[2], ElecPriceFixed)
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assert isinstance(prediction.providers[3], ElecPriceImport)
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assert isinstance(prediction.providers[4], ElecPriceTibber)
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assert isinstance(prediction.providers[5], FeedInTariffEnergyCharts)
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assert isinstance(prediction.providers[6], FeedInTariffFixed)
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assert isinstance(prediction.providers[7], FeedInTariffImport)
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assert isinstance(prediction.providers[8], LoadAkkudoktor)
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assert isinstance(prediction.providers[9], LoadAkkudoktorAdjusted)
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assert isinstance(prediction.providers[10], LoadVrm)
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assert isinstance(prediction.providers[11], LoadImport)
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assert isinstance(prediction.providers[12], PVForecastAkkudoktor)
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assert isinstance(prediction.providers[13], PVForecastVrm)
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assert isinstance(prediction.providers[14], PVForecastPVNode)
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assert isinstance(prediction.providers[15], PVForecastForecastSolar)
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assert isinstance(prediction.providers[16], PVForecastSolcast)
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assert isinstance(prediction.providers[17], PVForecastImport)
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assert isinstance(prediction.providers[18], WeatherBrightSky)
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assert isinstance(prediction.providers[19], WeatherClearOutside)
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assert isinstance(prediction.providers[20], WeatherOpenMeteo)
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assert isinstance(prediction.providers[21], WeatherImport)
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def test_provider_by_id(prediction, forecast_providers):
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"""Test that provider_by_id method returns the correct provider."""
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for provider in forecast_providers:
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assert prediction.provider_by_id(provider.provider_id()).provider_id() == provider.provider_id()
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def test_prediction_repr(prediction):
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"""Test that the Prediction instance's representation is correct."""
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result = repr(prediction)
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assert "Prediction([" in result
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assert "ElecPriceAkkudoktor" in result
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assert "ElecPriceEnergyCharts" in result
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assert "ElecPriceFixed" in result
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assert "ElecPriceImport" in result
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assert "ElecPriceTibber" in result
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assert "FeedInTariffEnergyCharts" in result
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assert "FeedInTariffFixed" in result
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assert "FeedInTariffImport" in result
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assert "LoadAkkudoktor" in result
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assert "LoadVrm" in result
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assert "LoadImport" in result
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assert "PVForecastAkkudoktor" in result
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assert "PVForecastVrm" in result
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assert "PVForecastImport" in result
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assert "WeatherBrightSky" in result
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assert "WeatherClearOutside" in result
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assert "WeatherOpenMeteo" in result
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assert "WeatherImport" in result
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@pytest.mark.asyncio
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async def test_empty_providers(prediction, forecast_providers):
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"""Test behavior when Prediction does not have providers."""
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# Clear all prediction providers from prediction
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providers_bkup = prediction.providers.copy()
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prediction.providers.clear()
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assert prediction.providers == []
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await prediction.update_data() # Should not raise an error even with no providers
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# Cleanup after Test
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prediction.providers = providers_bkup
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