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Difference between revisions of "Energy import example"

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(Created page with "== Abstract == The so called "Energy import" is inspired by [http://PVOutput.org PVOutput] energy import chart. If the generated power (Net power) is greater than the consum...")
 
m (PVLng adoption)
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[[File:EnergyImportChart.png]]
 
[[File:EnergyImportChart.png]]
  
First there are 2 areas, the overall production (E-Total, blue) and overall consumption (Power consumption, red) over time.
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The interesting part is the red Energy import spline, which stops at 7:20 by 2820 Wh. This means, no energy import, only export.
 
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Import restarts at 17:50.  
Then the actual inverter yield (P<sub>AC</sub> Blockhaus, blue) and actual consumption (S0 consumption, dashed red).
 
 
 
The interesting part is the black Energy import spline, which stays by 2998 Wh since 07:08 here. This means, since 07:08 there is no energy import, only export.
 
  
 
'''''Please note:'''''  
 
'''''Please note:'''''  

Revision as of 14:15, 1 March 2014

Abstract

The so called "Energy import" is inspired by PVOutput energy import chart.

If the generated power (Net power) is greater than the consumption, the energy import is no more raising.

Charts

PVOutput

PVOutputNetProduction.png

PVLng adoption

EnergyImportChart.png

The interesting part is the red Energy import spline, which stops at 7:20 by 2820 Wh. This means, no energy import, only export. Import restarts at 17:50.

Please note:

  • Arrange the channels according their units to the axes!

Definition

Let's start with the meter channels for the areas.

I decided to put all "watt" channels on the left and all "watt hour" channels on the right axis.

E-Total

Definition

File:EnergyImportE-TotalChannel.png

We define here a positive cost per watt hour to see later the income amount generated.

(We get here 28.74 cent per kilo watt hour == 0.0002874 Euro per watt hour)

Chart settings

File:EnergyImportE-TotalChart.png

S0 consumption and Power consumption

Definition

Here we need also a special helper channel, the Sensor to Meter proxy.

We have to convert the actual power consumption (Power sensor in watt) into an meter channel (in watt hours) which also sums up the data.

Power consumption [Wh]
  |-> Power usage [W] 

The Power usage is a normal power sensor and the Power consumption is the proxy to convert the sensor to a meter channel!

File:PowerUsageChannel.png

Chart settings

File:PowerConsumptionChartSettings.png File:PowerUsageChartSettings.png

For Power consumption we are also interested in peek powers used.

PAC

Definition

Simply the actual generated inverter power:

File:PacChannel.png

Chart settings

File:PacChartSettings.png

We are also interested in the max. value.

Energy Import

Definition

Here we need a channel based on the Import / Export channel type.

File:EnergyImportChannel.png

We define here a negative cost per Wh to see later the amount consumed.

(We pay here 23.44 cent per kilo watt hour == 0.0002344 Euro per watt hour)

Chart settings

File:EnergyImportChartSettings.png

Result

Now we can put this all together:

EnergyImportTree.png

In the Charts view we will have this:

File:EnergyImportChartsTree.png

  • We have consumed 4.6 kWh, but bought only 2.8 kWh and have a win of € 4.79 at the moment!
  • The Amount column will only be filled for meter channels.
  • The Cost column will only be filled for meter channels with costs defined.