Adds bar graphs with cost
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@@ -1,4 +1,5 @@
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require 'open-uri'
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require 'gr/plot'
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EASY_ENERGY_TARIFFS = {}
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# See https://www.belastingdienst.nl/wps/wcm/connect/bldcontentnl/belastingdienst/zakelijk/overige_belastingen/belastingen_op_milieugrondslag/tarieven_milieubelastingen/tabellen_tarieven_milieubelastingen
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@@ -50,65 +51,48 @@ class Cost
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end
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######################################################
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# Easy Energy API (proprietary) - better to use entsoe
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# Easy Energy - makes use of entsoe, adds EasyEnergy opslag
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######################################################
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# returns a hash with keys formatted "yyyy-mm-dd-hr" and values [usage, return]
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# e.g. { 2021-12-16-06"=>[0.36058, 0.298] }
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def easy_energy_tariffs(date)
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p "Fetching EasyEnergy tariffs for %s" % date.strftime("%F-%H")
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# calculate offset (date is in UTC, and we want to have tariffs in Amsterdam zone)
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zone = 'Amsterdam'
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offset = DateTime.now.in_time_zone(zone).utc_offset
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date = date.beginning_of_day.advance(seconds: offset)
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url = "https://mijn.easyenergy.com/nl/api/tariff/getapxtariffs?startTimestamp=%s&endTimestamp=%s&grouping=" % [date.strftime("%F %T"),date.advance(:hours => 24).strftime("%F %T")]
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#p urlvandaag
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json = JSON.load(URI::open(url))
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# advancing with 1 hrs (to offset for something?)
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json.map{|t| [DateTime.parse(t["Timestamp"]).strftime("%F-%H"), [t["TariffUsage"], t["TariffReturn"]]]}.to_h
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end
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def easy_energy_rate(formatted_hour)
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unless EASY_ENERGY_TARIFFS.key?(formatted_hour)
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EASY_ENERGY_TARIFFS.merge!(easy_energy_tariffs(Date.parse(formatted_hour)))
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end
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EASY_ENERGY_TARIFFS[formatted_hour]
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year = Date.parse(formatted_hour).year
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case year
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when 2020..2022
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# opslag, zonder BTW
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0.00800
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end
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end
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def easy_energy_cost(formatted_hour, usage_kwh, return_kwh)
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return nil if (usage_kwh.nil? || return_kwh.nil?)
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usage_kwh_cost, return_kwh_cost = easy_energy_rate(formatted_hour)
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usage_kwh_cost = return_kwh_cost = (entsoe.price_at(formatted_hour)+easy_energy_rate(formatted_hour))*(1+vat_at(Date.parse(formatted_hour)))
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add_tax(formatted_hour, usage_kwh, usage_kwh_cost, return_kwh, return_kwh_cost)
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end
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def easy_energy_high_low(date)
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hour_start = date.beginning_of_day
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def easy_energy_hours(date)
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hour_start = date.in_time_zone(zone).beginning_of_day
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day_end = hour_start.advance(days: 1)
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max_rate = 0.0
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min_rate = 100.0
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min_hour = nil
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max_hour = nil
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result = []
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while(hour_start < day_end) do
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easy_usage_rate, easy_return_rate = easy_energy_rate(hour_start.strftime("%F-%H"))
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unless easy_usage_rate.nil?
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# determine max
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if easy_usage_rate > max_rate
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max_rate = easy_usage_rate
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max_hour = hour_start.strftime("%F-%H")
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end
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# determine min
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if easy_usage_rate < min_rate
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min_rate = easy_usage_rate
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min_hour = hour_start.strftime("%F-%H")
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end
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end
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formatted_hour = hour_start.strftime("%F %H")
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result << easy_energy_cost(formatted_hour, 1, 0)
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hour_start = hour_start.advance(:hours => 1)
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end
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return min_hour,max_hour
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end
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result
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end
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def easy_energy_barplot(date)
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hours = (0..23).to_a
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costs = easy_energy_hours(date)
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GR.barplot(hours,costs)
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# make sure you have set GKS_WSTYPE=100 in the environment (for headless setup)
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title = "Kosten per kwH (incl. belastingen en BTW) - %s" % date.strftime("%A, %e %B %Y")
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xlabel = "uur"
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ylabel = "EUR"
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GR.savefig("easy_%s.png" % date.strftime("%F"), title: title, xlabel: xlabel, ylabel: ylabel)
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end
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######################################################
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# Oxxio rates and cost
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@@ -174,7 +158,7 @@ class Cost
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######################################################
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def hours(date, year_shift=0)
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hour_start = date.in_time_zone("Amsterdam").beginning_of_day
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hour_start = date.in_time_zone(zone).beginning_of_day
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day_end = hour_start.advance(days: 1)
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result = []
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lowest_hour, highest_hour,high_hours = entsoe.high_low_hours(date.advance(years: year_shift))
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@@ -190,7 +174,7 @@ class Cost
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return_kwh = hour_diff[:total_kwh_produced_high] + hour_diff[:total_kwh_produced_low] rescue nil
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formatted_hour = hour_start.advance(years: year_shift).strftime("%F %H")
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entsoe_cost = entsoe_energy_cost(formatted_hour, usage_kwh, return_kwh) # without battery use
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easy_cost = easy_energy_cost(formatted_hour, usage_kwh, return_kwh) # without battery use
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#
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# Make battery work
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@@ -210,7 +194,7 @@ class Cost
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end
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end
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end
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entsoe_cost_with_battery = entsoe_energy_cost(formatted_hour, usage_kwh, return_kwh) # with battery use
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easy_cost_with_battery = easy_energy_cost(formatted_hour, usage_kwh, return_kwh) # with battery use
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#
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# end of battery work
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@@ -230,8 +214,8 @@ class Cost
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return_kwh,
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battery.battery_kwh,
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entsoe.price_at(formatted_hour), # entsoe rate
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entsoe_cost_with_battery,
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entsoe_cost,
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easy_cost_with_battery,
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easy_cost,
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oxxio_rate,
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oxxio_cost]
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