Riist- ja tarkvaraline lahendus eluruumi sisekliima parameetrite jälgimiseks
Laen...
Kuupäev
2024
Kättesaadav alates
10.09.2024
Autorid
Ajakirja pealkiri
Ajakirja ISSN
Köite pealkiri
Kirjastaja
Eesti Maaülikool
Abstrakt
Inimesed viidavad suurema osa ööpäevast siseruumides. Uuemates eluhoonetes kontrollib hooneautomaatika ruumi sisekliima parameetreid. Vanemates hoonetes selline võimekus puudub. Bakalaureusestöö tulemusena valmis riist- ja tarkvaraline lahendus Arduino ja Raspberry Pi baasil, mida kasutati eluruumi kolme parameetri (temperatuur, õhuniiskus, süsihappegaasi kogus) määramiseks. Töö tulemusena saadi teada, et ruumi sisekliima parameetrid on ööpäevases lõikes kõikuvad ning ei vasta alati kirjanduses toodud väärtustele. Töö aitab saada ettekujutuse, millised sisekliima parameetrid on ruumides, kus puudub ventilatsioon. Praegune töö baseerub ühe ruumi andmetel. Riist- ja tarkvaralist lahendust edasi arendades on võimalik uurida kogu korteri või eramaja ruumide kompleksi sisekliima parameetreid.
People spend the majority of their day indoors. In newer residential buildings, building automation controls indoor climate parameters. However, older buildings lack such capability. As a result of the bachelor's thesis, a hardware and software solution was developed based on Arduino and Raspberry Pi, which was used to determine three parameters (temperature, humidity, carbon dioxide level) in a living space. The study revealed that indoor climate parameters fluctuate throughout the day and do not always correspond to the values provided in the literature. The study helps to understand what indoor climate parameters are in spaces without ventilation. The current work is based on data from one room. By further developing the hardware and software solution, it is possible to investigate the indoor climate parameters of the entire apartment or house complex.
People spend the majority of their day indoors. In newer residential buildings, building automation controls indoor climate parameters. However, older buildings lack such capability. As a result of the bachelor's thesis, a hardware and software solution was developed based on Arduino and Raspberry Pi, which was used to determine three parameters (temperature, humidity, carbon dioxide level) in a living space. The study revealed that indoor climate parameters fluctuate throughout the day and do not always correspond to the values provided in the literature. The study helps to understand what indoor climate parameters are in spaces without ventilation. The current work is based on data from one room. By further developing the hardware and software solution, it is possible to investigate the indoor climate parameters of the entire apartment or house complex.
Kirjeldus
Bakalaureusetöö
Tehnika ja tehnoloogia õppekaval
Märksõnad
bakalaureusetööd, Arduino, Raspberry Pi, hoone sisekliima
