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Shranjevanje energije iz sončne elektrarne z uporabo vodnega grelca in Arduino mikrokrmilnika
ID Porenta, Marko (Author), ID Bajec, Marko (Mentor) More about this mentor... This link opens in a new window

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Abstract
Namen diplomske naloge je ponuditi programsko rešitev, ki omogoča čim boljše izkoriščanje sončne elektrarne tudi v primeru, da zmogljivosti elektrarne presegajo količine elektrike, ki jo sicer izvažamo nazaj v električno omrežje. S pomočjo Arduino mikrokrmilnika bi to sicer neizkoriščeno odvečno elektriko koristno porabili za gretje vode s pomočjo vodnega grelca. Prav tako mora biti novonastali sistem dovajanja električne energije dovolj fleksibilen, da s sprotnimi popravki dovajanja električne energije zagotavlja, da v omrežje vedno izvažamo vso elektriko, ki jo lahko, obenem pa se prilagajamo nenadnim električnim obremenitvam v stavbi - primer tega bi bil prižig naprave, ki porablja večjo količino elektrike, npr. električna peč. To težavo bi rešili z uvedbo algoritma, ki elektriko dovaja vodnemu grelcu le pod pogojem, da so energetske potrebe stavbe v celoti pokrite, hkrati pa v omrežje izvažamo vso elektriko, ki jo lahko. Izboljšave na področju pridelane električne energije bodo tudi grafično prikazane med diplomsko nalogo.

Language:Slovenian
Keywords:IoT, sončna elektrarna, vodni grelec, pametni dom
Work type:Bachelor thesis/paper
Typology:2.11 - Undergraduate Thesis
Organization:FRI - Faculty of Computer and Information Science
Year:2023
PID:20.500.12556/RUL-149503 This link opens in a new window
COBISS.SI-ID:164245507 This link opens in a new window
Publication date in RUL:07.09.2023
Views:191
Downloads:22
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Secondary language

Language:English
Title:Storing Electricity Produced by a Solar Power Plant Using a Water Heater and an Arduino Module
Abstract:
The purpose of this thesis is to, in the form of a software solution, provide an answer to the problem of effectively producing electricity using solar panels, even in the event that we are exporting as much electricity back into the electric grid as possible and still have excess solar panel capacity. Using an Arduino module, this otherwise unused electricity could potentially be used for heating water using a water heater. This solution would also have to be capable of adjusting to sudden changes in power usage in the building. An example of this would be a sudden surge in power consumption triggered by turning on a more demanding device, such as an electronic stove. In this case, the newly implemented system must ensure that the maximum amount of energy that we can export back into the grid is being exported before diverting additional power to the water boiler. This problem would be solved by introducing an algorithm that only diverts power to the water boiler if certain conditions are met first. Results of the newly implemented system will be shown in the form of graphs over the course of the thesis.

Keywords:IoT, solar power plant, water boiler, smart home

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